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CN112546268A - Disinfection and killing method realized by adopting cold-chain logistics storage disinfection and killing integrated device - Google Patents

Disinfection and killing method realized by adopting cold-chain logistics storage disinfection and killing integrated device Download PDF

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CN112546268A
CN112546268A CN202011499584.3A CN202011499584A CN112546268A CN 112546268 A CN112546268 A CN 112546268A CN 202011499584 A CN202011499584 A CN 202011499584A CN 112546268 A CN112546268 A CN 112546268A
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ozone
gas
sterilization
storage area
section
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公绪金
董玉奇
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Harbin University of Commerce
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Harbin University of Commerce
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L2/00Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor
    • A61L2/16Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor using chemical substances
    • A61L2/20Gaseous substances, e.g. vapours
    • A61L2/202Ozone
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L2/00Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor
    • A61L2/16Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor using chemical substances
    • A61L2/22Phase substances, e.g. smokes, aerosols or sprayed or atomised substances
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L2/00Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor
    • A61L2/26Accessories or devices or components used for biocidal treatment
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L9/00Disinfection, sterilisation or deodorisation of air
    • A61L9/015Disinfection, sterilisation or deodorisation of air using gaseous or vaporous substances, e.g. ozone
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L9/00Disinfection, sterilisation or deodorisation of air
    • A61L9/16Disinfection, sterilisation or deodorisation of air using physical phenomena
    • A61L9/18Radiation
    • A61L9/20Ultraviolet radiation
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L2202/00Aspects relating to methods or apparatus for disinfecting or sterilising materials or objects
    • A61L2202/20Targets to be treated
    • A61L2202/25Rooms in buildings, passenger compartments
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L2209/00Aspects relating to disinfection, sterilisation or deodorisation of air
    • A61L2209/20Method-related aspects
    • A61L2209/21Use of chemical compounds for treating air or the like
    • A61L2209/212Use of ozone, e.g. generated by UV radiation or electrical discharge

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  • Health & Medical Sciences (AREA)
  • Epidemiology (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • General Chemical & Material Sciences (AREA)
  • Apparatus For Disinfection Or Sterilisation (AREA)
  • Storage Of Fruits Or Vegetables (AREA)

Abstract

采用冷链物流仓储消杀集成装置实现的消杀方法,属于冷链物流仓储区病毒及病菌的消杀领域;解决了冷链物流领域中,缺乏臭氧全面消杀与余臭氧快速消除的消杀方法的问题。本发明包括如下步骤:S1、首先,利用仓储区货品消杀装置对仓储设备内的货品进行消杀;S2、其次,通过仓储区空气循环消杀净化装置和仓储区货品消杀装置输出的臭氧气体对从仓储设备内抽取的气体进行消杀,从而实现了对仓储设备的全面消杀。本发明主要用于对冷链物流仓储区病毒及病菌进行消杀。

Figure 202011499584

The sterilization method realized by the cold chain logistics warehousing and sterilization integrated device belongs to the field of virus and germ sterilization in the cold chain logistics warehousing area; it solves the lack of comprehensive sterilization of ozone and rapid elimination of residual ozone in the field of cold chain logistics. method question. The present invention includes the following steps: S1. First, use the storage area product disinfection device to disinfect the goods in the storage equipment; S2, secondly, pass the ozone output from the storage area air circulation disinfection and purification device and the storage area goods disinfection device. The gas sterilizes the gas extracted from the storage equipment, thereby realizing the comprehensive sterilization of the storage equipment. The invention is mainly used for killing viruses and germs in cold chain logistics storage areas.

Figure 202011499584

Description

Disinfection and killing method realized by adopting cold-chain logistics storage disinfection and killing integrated device
Technical Field
The invention belongs to the field of virus and germ killing in cold-chain logistics storage areas.
Background
The rapid development of cold-chain logistics provides support for accelerating the production, storage and transportation of agricultural products and fresh products.
At present, the traditional distributed disinfection technology applied to a cold-chain logistics storage area or a cold-chain logistics box has defects in the aspect of dealing with the epidemic situation prevention and control of new coronavirus. Ultraviolet irradiation disinfection is a common disinfection technology in cold-chain logistics, but has the problems of insufficient lighting disinfection coverage rate, large influence of lighting degree on disinfection rate and the like; although the efficiency of the chlorine-containing disinfectant spraying disinfection is high, the secondary pollution problem of the air environment and the food exists.
Ozone is used as an environment-friendly strong oxidant, new coronavirus and pathogenic bacteria can be oxidized by strong oxidizing property, the killing rate can be 100%, and the final product of ozone in the attenuation process is oxygen, so that the problem of secondary pollution of the environment and cold-chain logistics products is solved. The key point of using ozone as a sterilizing agent is to realize high coverage rate and high permeability of ozone in the low-temperature closed environment of cold-chain logistics and effectively reduce the oxidation of ozone on a refrigerating pipe body and food.
Therefore, aiming at the process characteristics of cold stores or refrigerated transport cases in a cold chain logistics cabin area, efficient and mature matched equipment is researched and developed, and the cold chain logistics cabin area has important application, social and economic values for realizing comprehensive killing of the air environment of a refrigerated space in the whole flow of cold chain logistics and outer packages of products and the like. In addition, the rapid elimination of residual ozone after the high-concentration ozone sterilization is also a key problem influencing cold-chain logistics, and the rapid elimination of residual ozone after the sterilization is completed is favorable for saving the time cost of cold-chain logistics and reducing the oxidation corrosion degree of ozone on the internal pipelines and wall surfaces of the cold storage; however, in the field of cold chain logistics, an integrated device for comprehensively killing ozone and quickly eliminating residual ozone is lacked, so that the problem needs to be solved urgently.
Disclosure of Invention
The invention aims to solve the problem that a killing method for comprehensively killing ozone and quickly eliminating residual ozone is lacked in the field of cold-chain logistics, and provides a killing method realized by adopting a cold-chain logistics storage killing integrated device.
The killing method is realized by adopting a cold-chain logistics storage killing integrated device, wherein the cold-chain logistics storage killing integrated device comprises a storage area goods killing device 1 and a storage area air circulation killing and purifying device 2;
the goods sterilizing device 1 in the storage area is used for absorbing outside air to generate ozone gas and ozone liquid and sterilizing goods in the storage equipment 3 by using the ozone gas or the ozone liquid; is also used for providing ozone gas for the air circulating sterilizing and purifying device 2 of the storage area;
the air circulating sterilizing and purifying device 2 of the storage area is used for extracting the gas in the storage equipment 3, sterilizing the extracted gas by using ozone gas and then sending the gas into the storage equipment 3, thereby sterilizing the gas in the storage equipment 3;
the killing method comprises the following steps:
s1, first, the goods in the storage device 3 are killed by the goods killing device 1 in the storage area, which specifically comprises: when the refrigerating temperature in the storage equipment 3 is below zero, the goods sterilizing device 1 in the storage area sterilizes the goods in the storage equipment 3 by using the generated ozone gas; when the refrigerating temperature in the storage equipment 3 is zero or above, the goods sterilizing device 1 in the storage area sterilizes the goods in the storage equipment 3 in a spraying mode by using the generated ozone liquid;
s2, secondly, the ozone gas output by the air circulation sterilizing and purifying device 2 and the goods sterilizing and purifying device 1 in the storage area is used for sterilizing and killing the gas extracted from the storage equipment 3, thereby realizing the comprehensive sterilization and killing of the storage equipment 3.
Preferably, the goods sterilizing and killing device 1 in the storage area comprises an air inlet grille 1-1, a medium-efficiency filter 1-2, an air pressure pump 1-3, an ozone generator 1-4, a sterilizing and killing water tank 1-5, a high-pressure mixing pump 1-6, a gas-water mixer 1-7, an ozone water solution metering pump 1-8, a power distribution and automatic control cabinet 1-9, a No. 1 shell 1-10 and a nozzle 1-11;
an air inlet grille 1-1 is arranged on the side wall of the air inlet side of a No. 1 shell 1-10, a medium-efficiency filter 1-2, an air pressure pump 1-3, an ozone generator 1-4, a sterilization water tank 1-5, a high-pressure mixing pump 1-6, an air-water mixer 1-7, an ozone water solution metering pump 1-8 and a power distribution and automatic control cabinet 1-9 are all arranged in the No. 1 shell 1-10, and a nozzle 1-11 is arranged in a storage device 3;
the air pressure pump 1-3 is used for pumping outside air into the ozone generator 1-4, and the outside air sequentially passes through the air inlet grille 1-1 and the intermediate filter 1-2 in the process of being pumped into the ozone generator 1-4, wherein the intermediate filter 1-2 is used for filtering particles in the outside air;
the ozone generator 1-4 is used for generating 4 paths of ozone gas according to the received filtered outside air, and each output port of the ozone generator 1-4 outputs one path of ozone gas, wherein the first output port and the second output port of the ozone generator 1-4 are communicated with the air circulating sterilizing and purifying device 2 of the storage area and are used for providing two paths of ozone gas for the air circulating sterilizing and purifying device 2 of the storage area; the third output port of the ozone generator 1-4 is communicated with the nozzle 1-11;
the fourth output port of the ozone generator 1-4 is communicated with the gas-water mixer 1-7;
the high-pressure mixing pump 1-6 is used for pumping water in the sterilizing water tank 1-5 into the gas-water mixer 1-7;
a gas-water mixer 1-7 for mixing the received ozone gas with water to generate ozone liquid;
the ozone water solution metering pump 1-8 is used for pumping the ozone liquid generated by the gas-water mixer 1-7 into the nozzle 1-11;
and the power distribution and automatic control cabinet 1-9 is used for supplying power to the ozone generator 1-4 and controlling the rotating speed of the air pressurizing pump 1-3, the high-pressure mixing pump 1-6 and the ozone water solution metering pump 1-8.
Preferably, in step S1, when the refrigerating temperature in the storage device 3 is zero or above, the specific process of the goods killing device 1 killing the goods in the storage device 3 in the form of spray by using the generated ozone liquid is as follows:
firstly, an air pressure pump 1-3, a high-pressure mixing pump 1-6 and an air-water mixer 1-7 start to work, and meanwhile, a power distribution and automatic control cabinet 1-9 supplies power to an ozone generator 1-4 to enable the ozone generator 1-4 to start to work; pumping outside air into the ozone generators 1 to 4 through the air pressure pumps 1 to 3, leading ozone gas generated by the ozone generators 1 to 4 into the air-water mixers 1 to 7 through fourth output ports of the ozone generators 1 to 4, leading the third output ports of the ozone generators 1 to 4 to be in a cut-off state, leading the ozone gas output by the first and second output ports of the ozone generators 1 to 4 into the air circulating sterilizing and purifying device 2 of the storage area, and simultaneously leading water in the sterilizing and water tank 1 to 5 into the air-water mixers 1 to 7 through the high-pressure mixing pumps 1 to 6; the gas-water mixer 1-7 mixes ozone gas with water to generate ozone liquid; then the ozone liquid generated by the gas-water mixer 1-7 is pumped into the nozzles 1-11 by the ozone water solution metering pump 1-8 and is sprayed out in a spraying mode, thereby realizing the disinfection and killing of goods in the storage equipment 3.
Preferably, in step S1, when the refrigerating temperature in the storage device 3 is below zero, the specific process of the goods killing apparatus 1 using the generated ozone gas to kill the goods in the storage device 3 is as follows:
firstly, an air pressure pump 1-3 starts to work, and meanwhile, a power distribution and automatic control cabinet 1-9 supplies power to an ozone generator 1-4 to enable the ozone generator 1-4 to start to work; the air pressure pump 1-3 pumps the outside air into the ozone generator 1-4, the ozone gas generated by the ozone generator 1-4 is sent into the nozzle 1-11 through the third output port, and is sprayed out in a gas form to sterilize goods in the storage equipment 3;
meanwhile, the fourth output port of the ozone generator 1-4 is in a cut-off state, and ozone gas output by the first output port and the second output port of the ozone generator 1-4 is introduced into the air circulating sterilizing and purifying device 2 of the storage area.
Preferably, the first structure of the air circulation sterilizing and purifying device 2 in the storage area is as follows: the air circulating, sterilizing and purifying device 2 of the storage area is sequentially divided into a storage area air return section 2-1, an intermediate effect filtering section 2-2, an ultraviolet sterilizing section 2-3, a primary ozone sterilizing section 2-4, a secondary ozone sterilizing section 2-5, a residual ozone control section 2-6 and a circulating fan section 2-7 in the direction from air inlet to air outlet;
the first and second output ports of the ozone generator 1-4 are respectively used for providing ozone gas for the first-stage ozone sterilizing section 2-4 and the second-stage ozone sterilizing section 2-5;
in step S2, the ozone gas output by the air circulation sterilizing and purifying device 2 and the goods sterilizing and purifying device 1 in the storage area is used to sterilize the gas extracted from the storage equipment 3:
firstly, gas in the storage equipment 3 is extracted through the circulating fan section 2-7, the extracted gas sequentially flows through the air return section 2-1 of the storage area to be swirled and then enters the intermediate-effect filtering section 2-2 to be filtered, the filtered gas enters the ultraviolet sterilizing section 2-3 to be subjected to ultraviolet sterilization, the gas subjected to ultraviolet sterilization enters the primary ozone sterilizing section 2-4 to be subjected to primary ozone sterilization, the gas subjected to primary ozone sterilization enters the secondary ozone sterilizing section 2-5 to be subjected to secondary ozone sterilization, the gas subjected to secondary ozone sterilization enters the residual ozone control section 2-6, the residual ozone control section 2-6 is used for carrying out reduction reaction on residual ozone in the gas subjected to secondary ozone sterilization, and the reduced gas is sent into the storage equipment 3 again, so that the gas extracted from the storage equipment 3 is sterilized.
Preferably, the second structure of the air circulation sterilizing and purifying device 2 in the storage area is as follows: the air circulating, sterilizing and purifying device 2 of the storage area is sequentially divided into a storage area air return section 2-1, an intermediate effect filtering section 2-2, a primary ozone sterilizing section 2-4, a secondary ozone sterilizing section 2-5, an ultraviolet sterilizing section 2-3, a residual ozone control section 2-6 and a circulating fan section 2-7 in the direction from air inlet to air outlet;
the first and second output ports of the ozone generator 1-4 are respectively used for providing ozone gas for the first-stage ozone sterilizing section 2-4 and the second-stage ozone sterilizing section 2-5;
in step S2, the ozone gas output by the air circulation sterilizing and purifying device 2 and the goods sterilizing and purifying device 1 in the storage area is used to sterilize the gas extracted from the storage equipment 3:
firstly, gas in the storage equipment 3 is extracted through a circulating fan section 2-7, the extracted gas sequentially flows through a storage area air return section 2-1 to be swirled and then enters a middle-effect filtering section 2-2 to be filtered, the filtered gas enters a first-stage ozone killing section 2-4 to be subjected to first ozone killing, the gas after the first ozone killing enters a second-stage ozone killing section 2-5 to be subjected to second ozone killing, the gas after the second ozone killing enters an ultraviolet killing section 2-3 to be subjected to ultraviolet killing, the gas after the ultraviolet killing enters a residual ozone control section 2-6, the residual ozone control section 2-6 is subjected to reduction reaction on residual ozone in the gas after the ultraviolet killing, and the reduced gas is sent into the storage equipment 3 again, so that the gas extracted from the storage equipment 3 is killed.
Preferably, an ozone gas flowmeter 12 is arranged on a communication pipeline between the first and second output ports of the ozone generator 1-4 and the air circulating sterilizing and purifying device 2 of the storage area.
Preferably, a check valve and an electromagnetic valve are arranged on a communicating pipeline between the first and second output ports of the ozone generators 1-4 and the air circulating sterilizing and purifying device 2 of the storage area;
a check valve and an electromagnetic valve are also arranged on a pipeline for communicating the third output port of the ozone generator 1-4 with the nozzle 1-11;
check valves and electromagnetic valves are also arranged on all pipelines of the fourth output ports of the ozone generators 1 to 4 communicated with the nozzles 1 to 11;
the power distribution and automatic control cabinets 1-9 are also used for controlling all the electromagnetic valves.
Preferably, a rectifying device 4 is arranged between two adjacent sections in the air circulation sterilizing and purifying device 2 of the storage area, and the rectifying device 4 is used for rectifying the gas input by the rectifying device to ensure that the gas outputs uniform gas flow.
Preferably, the ultraviolet sterilizing section 2-3 is realized by adopting an ultraviolet sterilizing lamp group;
the circulating fan sections 2-7 are realized by adopting a circulating fan;
the residual ozone control section 2-6 is realized by adopting a filler layer, and one or more of activated carbon, activated carbon fiber, activated carbon loaded with nano iron or activated carbon fiber loaded with nano iron are filled in the filler layer.
The invention has the following beneficial effects:
(1) the killing method realized by adopting the cold-chain logistics storage killing integrated device couples the ozone killing process with the environmental air re-purification process of the closed space, ensures the killing efficiency of ozone sterilization and disinfection and the coverage rate and permeability of ozone in the closed space under the low-temperature environment, and ensures 100% of comprehensive whole flow of killing new coronavirus and pathogenic bacteria in a cold-chain logistics system.
(2) The integrated device can be arranged outside the existing refrigeration house or the cold chain storage box body, is convenient for the rapid transformation and installation of the existing cold chain storage area or the storage box in the period of dealing with the new crown epidemic situation, and has important application and economic value for ensuring the safety of cold chain logistics food.
(3) The integrated equipment is provided with the residual ozone control section (2-6), so that the concentration of residual ozone can be quickly reduced, and the oxidation degree of residual ozone on the refrigerating pipe body and food can be reduced; meanwhile, the oxygen concentration in the ambient air can be quickly recovered after comprehensive killing, so that the environmental requirements required by personnel operation are facilitated, and the operation time is saved.
(4) The invention can be applied to the sterilization of related viruses on the surfaces of articles in cold storage and containers related to cold chain logistics and in the environment; the method can also be applied to comprehensive killing in the freezing and refrigerating space of the ocean-going or offshore seafood catching boat; the method realizes the killing of new coronavirus and other related viruses and pathogenic bacteria from the source.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the killing method implemented by the cold-chain logistics storage killing integrated device according to the invention;
fig. 2 is a schematic view of the internal structure of the goods sterilizing device 1 and the air circulating sterilizing and purifying device 2 in the storage area in fig. 1.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
It should be noted that the embodiments and features of the embodiments may be combined with each other without conflict.
Referring to fig. 1, the embodiment is described, and the killing method implemented by using the cold-chain logistics storage killing integrated device in the embodiment includes a storage area goods killing device 1 and a storage area air circulation killing and purifying device 2;
the goods sterilizing device 1 in the storage area is used for absorbing outside air to generate ozone gas and ozone liquid and sterilizing goods in the storage equipment 3 by using the ozone gas or the ozone liquid; is also used for providing ozone gas for the air circulating sterilizing and purifying device 2 of the storage area;
the air circulating sterilizing and purifying device 2 of the storage area is used for extracting the gas in the storage equipment 3, sterilizing the extracted gas by using ozone gas and then sending the gas into the storage equipment 3, thereby sterilizing the gas in the storage equipment 3;
the killing method comprises the following steps:
s1, first, the goods in the storage device 3 are killed by the goods killing device 1 in the storage area, which specifically comprises: when the refrigerating temperature in the storage equipment 3 is below zero, the goods sterilizing device 1 in the storage area sterilizes the goods in the storage equipment 3 by using the generated ozone gas; when the refrigerating temperature in the storage equipment 3 is zero or above, the goods sterilizing device 1 in the storage area sterilizes the goods in the storage equipment 3 in a spraying mode by using the generated ozone liquid;
s2, secondly, the ozone gas output by the air circulation sterilizing and purifying device 2 and the goods sterilizing and purifying device 1 in the storage area is used for sterilizing and killing the gas extracted from the storage equipment 3, thereby realizing the comprehensive sterilization and killing of the storage equipment 3.
When the killing method implemented by the cold-chain logistics storage killing integrated device is specifically applied, ozone gas or ozone liquid spray can be selected according to the temperature required by the goods refrigerated by the storage equipment 3 to kill the goods in the storage equipment 3, and when the refrigerating temperature in the storage equipment 3 is zero or above, the ozone liquid spray can be selected to kill the goods in the storage equipment 3; when the refrigerating temperature in the storage equipment 3 is below zero, ozone gas is selected to kill the goods in the storage equipment 3, so that the goods are prevented from being frozen in the process of killing the goods by selecting ozone liquid spray, and the goods are not killed thoroughly.
When the device is used specifically, on one hand, coronavirus and pathogenic bacteria on the surface of the goods are killed and killed firstly, on the other hand, the coronavirus and the pathogenic bacteria which are dissociated in the gas in the storage equipment 3 are killed and killed, and on the other hand, comprehensive killing can be carried out on the cold-chain logistics storage area through the two aspects.
Further, referring specifically to fig. 2, the goods sterilizing device 1 in the storage area comprises an air inlet grille 1-1, a medium-efficiency filter 1-2, an air pressure pump 1-3, an ozone generator 1-4, a sterilizing water tank 1-5, a high-pressure mixing pump 1-6, a gas-water mixer 1-7, an ozone water solution metering pump 1-8, a power distribution and automatic control cabinet 1-9, a No. 1 shell 1-10 and a nozzle 1-11;
an air inlet grille 1-1 is arranged on the side wall of the air inlet side of a No. 1 shell 1-10, a medium-efficiency filter 1-2, an air pressure pump 1-3, an ozone generator 1-4, a sterilization water tank 1-5, a high-pressure mixing pump 1-6, an air-water mixer 1-7, an ozone water solution metering pump 1-8 and a power distribution and automatic control cabinet 1-9 are all arranged in the No. 1 shell 1-10, and a nozzle 1-11 is arranged in a storage device 3;
the air pressure pump 1-3 is used for pumping outside air into the ozone generator 1-4, and the outside air sequentially passes through the air inlet grille 1-1 and the intermediate filter 1-2 in the process of being pumped into the ozone generator 1-4, wherein the intermediate filter 1-2 is used for filtering particles in the outside air;
the ozone generator 1-4 is used for generating 4 paths of ozone gas according to the received filtered outside air, and each output port of the ozone generator 1-4 outputs one path of ozone gas, wherein the first output port and the second output port of the ozone generator 1-4 are communicated with the air circulating sterilizing and purifying device 2 of the storage area and are used for providing two paths of ozone gas for the air circulating sterilizing and purifying device 2 of the storage area; the third output port of the ozone generator 1-4 is communicated with the nozzle 1-11;
the fourth output port of the ozone generator 1-4 is communicated with the gas-water mixer 1-7;
the high-pressure mixing pump 1-6 is used for pumping water in the sterilizing water tank 1-5 into the gas-water mixer 1-7;
a gas-water mixer 1-7 for mixing the received ozone gas with water to generate ozone liquid;
the ozone water solution metering pump 1-8 is used for pumping the ozone liquid generated by the gas-water mixer 1-7 into the nozzle 1-11;
and the power distribution and automatic control cabinet 1-9 is used for supplying power to the ozone generator 1-4 and controlling the rotating speed of the air pressurizing pump 1-3, the high-pressure mixing pump 1-6 and the ozone water solution metering pump 1-8.
The preferred embodiment provides a concrete implementation mode of the goods sterilizing and killing device 1 in the storage area, and the structure is simple and convenient to implement.
Further, referring to fig. 2 specifically, in step S1, when the refrigerating temperature in the storage device 3 is zero or above, the specific process of killing the goods in the storage device 3 by the storage area goods killing apparatus 1 in the form of spray by using the generated ozone liquid is as follows:
firstly, an air pressure pump 1-3, a high-pressure mixing pump 1-6 and an air-water mixer 1-7 start to work, and meanwhile, a power distribution and automatic control cabinet 1-9 supplies power to an ozone generator 1-4 to enable the ozone generator 1-4 to start to work; pumping outside air into the ozone generators 1 to 4 through the air pressure pumps 1 to 3, leading ozone gas generated by the ozone generators 1 to 4 into the air-water mixers 1 to 7 through fourth output ports of the ozone generators 1 to 4, leading the third output ports of the ozone generators 1 to 4 to be in a cut-off state, leading the ozone gas output by the first and second output ports of the ozone generators 1 to 4 into the air circulating sterilizing and purifying device 2 of the storage area, and simultaneously leading water in the sterilizing and water tank 1 to 5 into the air-water mixers 1 to 7 through the high-pressure mixing pumps 1 to 6; the gas-water mixer 1-7 mixes ozone gas with water to generate ozone liquid; then the ozone liquid generated by the gas-water mixer 1-7 is pumped into the nozzles 1-11 by the ozone water solution metering pump 1-8 and is sprayed out in a spraying mode, thereby realizing the disinfection and killing of goods in the storage equipment 3.
Further, referring to fig. 2 specifically, in step S1, when the refrigerating temperature in the storage device 3 is below zero, the specific process of the storage area goods killing apparatus 1 killing the goods in the storage device 3 by using the generated ozone gas is as follows:
firstly, an air pressure pump 1-3 starts to work, and meanwhile, a power distribution and automatic control cabinet 1-9 supplies power to an ozone generator 1-4 to enable the ozone generator 1-4 to start to work; the air pressure pump 1-3 pumps the outside air into the ozone generator 1-4, the ozone gas generated by the ozone generator 1-4 is sent into the nozzle 1-11 through the third output port, and is sprayed out in a gas form to sterilize goods in the storage equipment 3;
meanwhile, the fourth output port of the ozone generator 1-4 is in a cut-off state, and ozone gas output by the first output port and the second output port of the ozone generator 1-4 is introduced into the air circulating sterilizing and purifying device 2 of the storage area.
Further, referring specifically to fig. 2, the first structure of the air circulation sterilizing and purifying device 2 for the storage area is: the air circulating, sterilizing and purifying device 2 of the storage area is sequentially divided into a storage area air return section 2-1, an intermediate effect filtering section 2-2, an ultraviolet sterilizing section 2-3, a primary ozone sterilizing section 2-4, a secondary ozone sterilizing section 2-5, a residual ozone control section 2-6 and a circulating fan section 2-7 in the direction from air inlet to air outlet;
the first and second output ports of the ozone generator 1-4 are respectively used for providing ozone gas for the first-stage ozone sterilizing section 2-4 and the second-stage ozone sterilizing section 2-5;
in step S2, the ozone gas output by the air circulation sterilizing and purifying device 2 and the goods sterilizing and purifying device 1 in the storage area is used to sterilize the gas extracted from the storage equipment 3:
firstly, gas in the storage equipment 3 is extracted through the circulating fan section 2-7, the extracted gas sequentially flows through the air return section 2-1 of the storage area to be swirled and then enters the intermediate-effect filtering section 2-2 to be filtered, the filtered gas enters the ultraviolet sterilizing section 2-3 to be subjected to ultraviolet sterilization, the gas subjected to ultraviolet sterilization enters the primary ozone sterilizing section 2-4 to be subjected to primary ozone sterilization, the gas subjected to primary ozone sterilization enters the secondary ozone sterilizing section 2-5 to be subjected to secondary ozone sterilization, the gas subjected to secondary ozone sterilization enters the residual ozone control section 2-6, the residual ozone control section 2-6 is used for carrying out reduction reaction on residual ozone in the gas subjected to secondary ozone sterilization, and the reduced gas is sent into the storage equipment 3 again, so that the gas extracted from the storage equipment 3 is sterilized.
Furthermore, the second structure of the air circulation sterilizing and purifying device 2 in the storage area is as follows: the air circulating, sterilizing and purifying device 2 of the storage area is sequentially divided into a storage area air return section 2-1, an intermediate effect filtering section 2-2, a primary ozone sterilizing section 2-4, a secondary ozone sterilizing section 2-5, an ultraviolet sterilizing section 2-3, a residual ozone control section 2-6 and a circulating fan section 2-7 in the direction from air inlet to air outlet;
the first and second output ports of the ozone generator 1-4 are respectively used for providing ozone gas for the first-stage ozone sterilizing section 2-4 and the second-stage ozone sterilizing section 2-5;
in step S2, the ozone gas output by the air circulation sterilizing and purifying device 2 and the goods sterilizing and purifying device 1 in the storage area is used to sterilize the gas extracted from the storage equipment 3:
firstly, gas in the storage equipment 3 is extracted through a circulating fan section 2-7, the extracted gas sequentially flows through a storage area air return section 2-1 to be swirled and then enters a middle-effect filtering section 2-2 to be filtered, the filtered gas enters a first-stage ozone killing section 2-4 to be subjected to first ozone killing, the gas after the first ozone killing enters a second-stage ozone killing section 2-5 to be subjected to second ozone killing, the gas after the second ozone killing enters an ultraviolet killing section 2-3 to be subjected to ultraviolet killing, the gas after the ultraviolet killing enters a residual ozone control section 2-6, the residual ozone control section 2-6 is subjected to reduction reaction on residual ozone in the gas after the ultraviolet killing, and the reduced gas is sent into the storage equipment 3 again, so that the gas extracted from the storage equipment 3 is killed.
In the preferred embodiment, the ultraviolet disinfection section 2-3 is arranged behind the first-level ozone disinfection section 2-4 and the second-level ozone disinfection section 2-5; the advantage of setting up like this lies in, and when ultraviolet irradiation setting in ozone disinfection back, the coupling of remaining ozone and ultraviolet light can realize the advanced oxidation to virus, bacterium and organic pollutant in the air, and its purifying effect can further promote.
Further, referring specifically to fig. 2, ozone gas flowmeters 12 are disposed on the communication pipes between the first and second output ports of the ozone generators 1-4 and the air circulation sterilizing and purifying device 2 of the storage area.
Furthermore, referring to fig. 2 specifically, a check valve and an electromagnetic valve are arranged on a communication pipeline between the first and second output ports of the ozone generator 1-4 and the air circulating sterilizing and purifying device 2 of the storage area;
a check valve and an electromagnetic valve are also arranged on a pipeline for communicating the third output port of the ozone generator 1-4 with the nozzle 1-11;
check valves and electromagnetic valves are also arranged on all pipelines of the fourth output ports of the ozone generators 1 to 4 communicated with the nozzles 1 to 11;
the power distribution and automatic control cabinets 1-9 are also used for controlling all the electromagnetic valves.
Further, referring to fig. 2 specifically, a rectifying device 4 is arranged between two adjacent sections inside the air circulation sterilizing and purifying device 2 of the storage area, and the rectifying device 4 is used for rectifying the gas input by the rectifying device to enable the gas to output a uniform gas flow.
In the preferred embodiment, the gas flow output by the rectifying device 4 is more uniform and the gas flow is more efficiently killed by the additional rectifying device 4.
Further, referring specifically to fig. 2, the ultraviolet killing section 2-3 is implemented by an ultraviolet killing lamp set;
the circulating fan sections 2-7 are realized by adopting a circulating fan;
the residual ozone control section 2-6 is realized by adopting a filler layer, and one or more of activated carbon, activated carbon fiber, activated carbon loaded with nano iron or activated carbon fiber loaded with nano iron are filled in the filler layer.
In the preferred embodiment, in a specific application, one or more of activated carbon, activated carbon fiber, activated carbon loaded with nano iron, or activated carbon fiber loaded with nano iron is filled in the filler layer, so as to realize rapid reduction or catalytic reduction of residual ozone.
Further, referring specifically to fig. 2, the ozone generators 1-4 output 4 ozone gases with the same or different concentrations according to the received instructions.
Further, referring to fig. 2 specifically, a temperature detection probe, a humidity detection probe and an ozone concentration detection probe are also arranged in the circulating fan section 2-7;
and data acquired by the temperature detection probe, the humidity detection probe and the ozone concentration detection probe are uploaded to a remote terminal in a wireless transmission mode.
In the preferred embodiment, the temperature, the humidity and the ozone concentration are monitored on line in real time by the temperature detection probe, the humidity detection probe and the ozone concentration detection probe.
Further, referring specifically to fig. 2, the integrated device further comprises a photovoltaic power generation and storage device, and both the photovoltaic power generation and storage device are used for supplying power to the goods disinfection device 1 in the storage area and the air circulation disinfection and purification device 2 in the storage area.
When the preferred embodiment is applied specifically, the photovoltaic power generation and storage device can be used for supplying power to the air pressurizing pump 1-3, the ozone generator 1-4, the high-pressure mixing pump 1-6, the gas-water mixer 1-7, the ozone water solution metering pump 1-8 and the power distribution and automatic control cabinet 1-9 in the goods sterilizing and killing device 1 of the storage area, and can also be used for supplying power to the circulating fan in the air circulating sterilizing and purifying device 2 of the storage area.
The technical parameters in the specific application of the killing method realized by adopting the cold-chain logistics storage killing integrated device can be seen in the following table:
Figure RE-GDA0002937967430000101
Figure RE-GDA0002937967430000111
although the invention herein has been described with reference to particular embodiments, it is to be understood that these embodiments are merely illustrative of the principles and applications of the present invention. It is therefore to be understood that numerous modifications may be made to the illustrative embodiments and that other arrangements may be devised without departing from the spirit and scope of the present invention as defined by the appended claims. It should be understood that features described in different dependent claims and herein may be combined in ways different from those described in the original claims. It is also to be understood that features described in connection with individual embodiments may be used in other described embodiments.

Claims (10)

1.采用冷链物流仓储消杀集成装置实现的消杀方法,所述的冷链物流仓储消杀集成装置包括仓储区货品消杀装置(1)和仓储区空气循环消杀净化装置(2);1. A sterilization method realized by a cold chain logistics warehousing and sterilization integrated device, the cold chain logistics warehousing and sterilization integrated device includes a storage area goods sterilization device (1) and a storage area air circulation sterilization and purification device (2) ; 仓储区货品消杀装置(1),用于吸收外界空气生成臭氧气体和臭氧液体,并利用臭氧气体或臭氧液体对仓储设备(3)内的货品进行消杀;还用于给仓储区空气循环消杀净化装置(2)提供臭氧气体;The storage area goods disinfecting device (1) is used for absorbing outside air to generate ozone gas and ozone liquid, and using ozone gas or ozone liquid to disinfect the goods in the storage equipment (3); it is also used for air circulation in the storage area The disinfection and purification device (2) provides ozone gas; 仓储区空气循环消杀净化装置(2),用于抽取仓储设备(3)内的气体,并利用臭氧气体对所抽取的气体进行消杀后,再送入仓储设备(3)内,从而实现对仓储设备(3)内气体的消杀;The air circulation sterilization and purification device (2) in the storage area is used to extract the gas in the storage equipment (3), and the extracted gas is sterilized by ozone gas, and then sent into the storage equipment (3), so as to realize the purification of the gas in the storage equipment (3). Disinfection of gas in storage equipment (3); 其特征在于,消杀方法包括如下过程:It is characterized in that, the disinfecting method comprises the following process: S1、首先,利用仓储区货品消杀装置(1)对仓储设备(3)内的货品进行消杀,具体为:当仓储设备(3)内的冷藏温度在零度以下,仓储区货品消杀装置(1)利用生成的臭氧气体对仓储设备(3)内的货品进行消杀;当仓储设备(3)内的冷藏温度在零度及以上时,仓储区货品消杀装置(1)利用生成的臭氧液体以喷雾的形式对仓储设备(3)内的货品进行消杀;S1. First, use the goods disinfecting device (1) in the storage area to disinfect the goods in the storage equipment (3), specifically: when the refrigeration temperature in the storage equipment (3) is below zero, the goods disinfecting device in the storage area is (1) Use the generated ozone gas to sterilize the goods in the storage equipment (3); when the refrigeration temperature in the storage equipment (3) is zero degrees or above, the goods sterilization device (1) in the storage area uses the generated ozone The liquid disinfects the goods in the storage equipment (3) in the form of spray; S2、其次,通过仓储区空气循环消杀净化装置(2)和仓储区货品消杀装置(1)输出的臭氧气体对从仓储设备(3)内抽取的气体进行消杀,从而实现了对仓储设备(3)的全面消杀。S2. Secondly, the gas extracted from the storage equipment (3) is sterilized by the ozone gas output from the air circulation sterilizing and purifying device (2) in the storage area and the goods sterilizing device (1) in the storage area, so as to realize the sterilization of the storage area. Complete sterilization of equipment (3). 2.根据权利要求1所述的采用冷链物流仓储消杀集成装置实现的消杀方法,其特征在于,仓储区货品消杀装置(1)包括进风格栅(1-1)、中效过滤器(1-2)、空气加压泵(1-3)、臭氧发生器(1-4)、消杀水箱(1-5)、高压混合泵(1-6)、气水混合器(1-7)、臭氧水溶液计量泵(1-8)、配电及自动控制柜(1-9)、1号壳体(1-10)和喷嘴(1-11);2. The sterilization method realized by adopting a cold chain logistics warehousing and sterilization integrated device according to claim 1, characterized in that, the goods sterilization device (1) in the storage area comprises an air inlet grille (1-1), a medium efficiency Filter (1-2), air pressure pump (1-3), ozone generator (1-4), disinfection water tank (1-5), high pressure mixing pump (1-6), air-water mixer ( 1-7), ozone water solution metering pump (1-8), power distribution and automatic control cabinet (1-9), No. 1 housing (1-10) and nozzle (1-11); 进风格栅(1-1)设置在1号壳体(1-10)的进风侧侧壁上,中效过滤器(1-2)、空气加压泵(1-3)、臭氧发生器(1-4)、消杀水箱(1-5)、高压混合泵(1-6)、气水混合器(1-7)、臭氧水溶液计量泵(1-8)和配电及自动控制柜(1-9)均设置在1号壳体(1-10)内,喷嘴(1-11)设置在仓储设备(3)内;The air inlet grill (1-1) is arranged on the side wall of the air inlet side of the No. 1 housing (1-10), and the medium efficiency filter (1-2), the air pressure pump (1-3), the ozone generator (1-4), disinfection water tank (1-5), high-pressure mixing pump (1-6), gas-water mixer (1-7), ozone water solution metering pump (1-8), power distribution and automatic control The cabinets (1-9) are all arranged in the No. 1 housing (1-10), and the nozzles (1-11) are arranged in the storage equipment (3); 空气加压泵(1-3),用于将外界空气泵入到臭氧发生器(1-4)内,外界空气泵入到臭氧发生器(1-4)内的过程中依次经过进风格栅(1-1)和中效过滤器(1-2),其中,中效过滤器(1-2)用于将外界空气中的颗粒物进行滤除;The air pressurizing pump (1-3) is used to pump the outside air into the ozone generator (1-4), and the outside air is pumped into the ozone generator (1-4) through the air inlet in turn. A grid (1-1) and a medium-efficiency filter (1-2), wherein the medium-efficiency filter (1-2) is used to filter out particulate matter in the outside air; 臭氧发生器(1-4),用于根据接收的过滤后的外界空气生成4路臭氧气体,臭氧发生器(1-4)的每个输出端口输出一路臭氧气体,其中,臭氧发生器(1-4)第一和第二输出端口与仓储区空气循环消杀净化装置(2)连通,用于给仓储区空气循环消杀净化装置(2)提供两路臭氧气体;臭氧发生器(1-4)第三输出端口与喷嘴(1-11)连通;The ozone generator (1-4) is used for generating four paths of ozone gas according to the received filtered outside air, and each output port of the ozone generator (1-4) outputs one path of ozone gas, wherein the ozone generator (1-4) -4) The first and second output ports are communicated with the air circulation disinfecting and purifying device (2) in the storage area, and are used to provide two-way ozone gas to the air circulation disinfecting and purification device (2) in the storage area; the ozone generator (1- 4) The third output port is communicated with the nozzle (1-11); 臭氧发生器(1-4)第四输出端口与气水混合器(1-7)连通;The fourth output port of the ozone generator (1-4) is communicated with the gas-water mixer (1-7); 高压混合泵(1-6),用于将消杀水箱(1-5)内的水泵入气水混合器(1-7);A high-pressure mixing pump (1-6) for pumping the water in the sterilizing water tank (1-5) into the gas-water mixer (1-7); 气水混合器(1-7),用于对接收的臭氧气体与水进行混合,生成臭氧液体;an air-water mixer (1-7) for mixing the received ozone gas and water to generate ozone liquid; 臭氧水溶液计量泵(1-8),用于将气水混合器(1-7)生成的臭氧液体泵入喷嘴(1-11);an ozone aqueous solution metering pump (1-8) for pumping the ozone liquid generated by the gas-water mixer (1-7) into the nozzle (1-11); 配电及自动控制柜(1-9),用于给臭氧发生器(1-4)进行供电,还用于对空气加压泵(1-3)、高压混合泵(1-6)和臭氧水溶液计量泵(1-8)的转速进行控制。The power distribution and automatic control cabinet (1-9) is used to supply power to the ozone generator (1-4), as well as to the air pressurizing pump (1-3), the high-pressure mixing pump (1-6) and the ozone The rotational speed of the aqueous solution metering pump (1-8) is controlled. 3.根据权利要求2所述的采用冷链物流仓储消杀集成装置实现的消杀方法,其特征在于,步骤S1中,当仓储设备(3)内的冷藏温度在零度及以上时,仓储区货品消杀装置(1)利用生成的臭氧液体以喷雾的形式对仓储设备(3)内的货品进行消杀的具体过程为:3. The sterilization method realized by adopting a cold chain logistics warehousing and sterilization integrated device according to claim 2, characterized in that, in step S1, when the refrigerating temperature in the storage equipment (3) is zero degrees and above, the storage area The specific process that the product disinfecting device (1) uses the generated ozone liquid to disinfect the products in the storage equipment (3) in the form of spray is as follows: 首先,空气加压泵(1-3)、高压混合泵(1-6)和气水混合器(1-7)开始工作,同时,配电及自动控制柜(1-9)给臭氧发生器(1-4)进行供电,使臭氧发生器(1-4)开始工作;通过空气加压泵(1-3)将外界空气泵入到臭氧发生器(1-4)内,臭氧发生器(1-4)生成的臭氧气体通过其第四输出端口通入气水混合器(1-7),臭氧发生器(1-4)的第三输出端口处于截止状态,臭氧发生器(1-4)的第一和二输出端口输出的臭氧气体通入仓储区空气循环消杀净化装置(2),同时,高压混合泵(1-6)将消杀水箱(1-5)内的水泵入气水混合器(1-7);气水混合器(1-7)将臭氧气体与水进行混合,生成臭氧液体;再通过臭氧水溶液计量泵(1-8)将气水混合器(1-7)生成的臭氧液体泵入喷嘴(1-11),并以喷雾的形式喷出,从而实现对仓储设备(3)内的货品进行消杀。First, the air pressurizing pump (1-3), the high-pressure mixing pump (1-6) and the air-water mixer (1-7) start to work, and at the same time, the power distribution and automatic control cabinet (1-9) supply the ozone generator ( 1-4) Power supply to make the ozone generator (1-4) work; external air is pumped into the ozone generator (1-4) through the air pressure pump (1-3), and the ozone generator (1-4) is pumped into the ozone generator (1-4). -4) The generated ozone gas is passed into the gas-water mixer (1-7) through its fourth output port, the third output port of the ozone generator (1-4) is in a cut-off state, and the ozone generator (1-4) The ozone gas output from the first and second output ports is passed into the air circulation disinfection and purification device (2) in the storage area, and at the same time, the high-pressure mixing pump (1-6) pumps the water in the disinfection water tank (1-5) into gas water Mixer (1-7); gas-water mixer (1-7) mixes ozone gas with water to generate ozone liquid; then the gas-water mixer (1-7) is mixed with ozone water solution metering pump (1-8) The generated ozone liquid is pumped into the nozzle (1-11) and sprayed out in the form of a spray, so as to realize the sterilization of the goods in the storage equipment (3). 4.根据权利要求2所述的采用冷链物流仓储消杀集成装置实现的消杀方法,其特征在于,步骤S1中,当仓储设备(3)内的冷藏温度在零度以下,仓储区货品消杀装置(1)利用生成的臭氧气体对仓储设备(3)内的货品进行消杀的具体过程为:4. The sterilization method realized by adopting a cold chain logistics storage sterilization integrated device according to claim 2, characterized in that, in step S1, when the refrigerating temperature in the storage equipment (3) is below zero, the goods in the storage area are eliminated. The specific process that the disinfecting device (1) utilizes the generated ozone gas to disinfect the goods in the storage equipment (3) is as follows: 首先,空气加压泵(1-3)开始工作,同时,配电及自动控制柜(1-9)给臭氧发生器(1-4)进行供电,使臭氧发生器(1-4)开始工作;空气加压泵(1-3)将外界空气泵入到臭氧发生器(1-4)内,臭氧发生器(1-4)生成的臭氧气体通过其第三输出端口送入喷嘴(1-11),并以气体的形式喷出实现对仓储设备(3)内的货品进行消杀;First, the air pressure pump (1-3) starts to work, and at the same time, the power distribution and automatic control cabinet (1-9) supplies power to the ozone generator (1-4), so that the ozone generator (1-4) starts to work The air pressurizing pump (1-3) pumps the outside air into the ozone generator (1-4), and the ozone gas generated by the ozone generator (1-4) is fed into the nozzle (1-4) through its third output port 11), and ejected in the form of gas to disinfect the goods in the storage equipment (3); 同时,臭氧发生器(1-4)的第四输出端口处于截止状态,臭氧发生器(1-4)的第一和第二输出端口输出的臭氧气体通入仓储区空气循环消杀净化装置(2)。At the same time, the fourth output port of the ozone generator (1-4) is in a cut-off state, and the ozone gas output by the first and second output ports of the ozone generator (1-4) is passed into the storage area air circulation disinfecting and purifying device ( 2). 5.根据权利要求2所述的采用冷链物流仓储消杀集成装置实现的消杀方法,其特征在于,仓储区空气循环消杀净化装置(2)的第一种结构为:仓储区空气循环消杀净化装置(2)从进气至出气方向上,依次被划分为仓储区回风段(2-1)、中效过滤段(2-2)、紫外消杀段(2-3)、一级臭氧消杀段(2-4)、二级臭氧消杀段(2-5)、残余臭氧控制段(2-6)和循环风机段(2-7);5. The sterilization method realized by adopting the cold chain logistics warehousing and sterilization integrated device according to claim 2, wherein the first structure of the air circulation sterilization and purification device (2) in the storage area is: the air circulation in the storage area The disinfection and purification device (2) is divided into the storage area return air section (2-1), medium-efficiency filter section (2-2), ultraviolet disinfection section (2-3), Primary ozone disinfection section (2-4), secondary ozone disinfection section (2-5), residual ozone control section (2-6) and circulating fan section (2-7); 臭氧发生器(1-4)第一和第二输出端口分别用于给一级臭氧消杀段(2-4)和二级臭氧消杀段(2-5)提供臭氧气体;The first and second output ports of the ozone generator (1-4) are respectively used to supply ozone gas to the primary ozone sterilization section (2-4) and the secondary ozone sterilization section (2-5); 步骤S2中,通过仓储区空气循环消杀净化装置(2)和仓储区货品消杀装置(1)输出的臭氧气体对从仓储设备(3)内抽取的气体进行消杀的实现方式为:In step S2, the realization mode of sterilizing the gas extracted from the storage equipment (3) by the ozone gas output from the storage area air circulation disinfecting and purifying device (2) and the storage area goods disinfecting device (1) is as follows: 首先,通过循环风机段(2-7)抽取仓储设备(3)内的气体,并且所抽取的气体依次经过仓储区回风段(2-1)进行旋流后进入中效过滤段(2-2)进行过滤,过滤后的气体进入紫外消杀段(2-3)进行紫外线消杀,紫外线消杀后的气体进入一级臭氧消杀段(2-4)进行第一次臭氧消杀,第一次臭氧消杀后的气体进入二级臭氧消杀段(2-5)进行第二次臭氧消杀,第二次臭氧消杀后的气体进入残余臭氧控制段(2-6),残余臭氧控制段(2-6)对第二次臭氧消杀后的气体中残留的臭氧进行还原反应,还原后的气体重新被送入仓储设备(3)内,从而实现对从仓储设备(3)内抽取的气体的消杀。First, the gas in the storage equipment (3) is extracted through the circulating fan section (2-7), and the extracted gas is swirled through the return air section (2-1) of the storage area in turn and then enters the medium-efficiency filter section (2- 2) filter, the filtered gas enters the ultraviolet sterilization section (2-3) for ultraviolet sterilization, and the gas after the ultraviolet sterilization enters the first-level ozone sterilization section (2-4) for the first ozone sterilization, The gas after the first ozone sterilization enters the secondary ozone sterilization section (2-5) for the second ozone sterilization, and the gas after the second ozone sterilization enters the residual ozone control section (2-6). The ozone control section (2-6) performs a reduction reaction on the residual ozone in the gas after the second ozone sterilization, and the reduced gas is sent into the storage equipment (3) again, so as to realize the recovery from the storage equipment (3) The sterilization of the gas extracted from the inside. 6.根据权利要求2所述的采用冷链物流仓储消杀集成装置实现的消杀方法,其特征在于,仓储区空气循环消杀净化装置(2)的第二种结构为:仓储区空气循环消杀净化装置(2)从进气至出气方向上,依次被划分为仓储区回风段(2-1)、中效过滤段(2-2)、一级臭氧消杀段(2-4)、二级臭氧消杀段(2-5)、紫外消杀段(2-3)、残余臭氧控制段(2-6)和循环风机段(2-7);6. The sterilization method realized by adopting a cold chain logistics storage and sterilization integrated device according to claim 2, characterized in that, the second structure of the air circulation sterilization and purification device (2) in the storage area is: the air circulation in the storage area The disinfection and purification device (2) is divided into the storage area return air section (2-1), the medium-efficiency filter section (2-2), and the first-level ozone disinfection section (2-4) in the direction from the air intake to the air outlet. ), secondary ozone disinfection section (2-5), ultraviolet disinfection section (2-3), residual ozone control section (2-6) and circulating fan section (2-7); 臭氧发生器(1-4)第一和第二输出端口分别用于给一级臭氧消杀段(2-4)和二级臭氧消杀段(2-5)提供臭氧气体;The first and second output ports of the ozone generator (1-4) are respectively used to supply ozone gas to the primary ozone sterilization section (2-4) and the secondary ozone sterilization section (2-5); 步骤S2中,通过仓储区空气循环消杀净化装置(2)和仓储区货品消杀装置(1)输出的臭氧气体对从仓储设备(3)内抽取的气体进行消杀的实现方式为:In step S2, the realization mode of sterilizing the gas extracted from the storage equipment (3) by the ozone gas output from the storage area air circulation disinfecting and purifying device (2) and the storage area goods disinfecting device (1) is as follows: 首先,通过循环风机段(2-7)抽取仓储设备(3)内的气体,并且所抽取的气体依次经过仓储区回风段(2-1)进行旋流后进入中效过滤段(2-2)进行过滤,过滤后的气体进入一级臭氧消杀段(2-4)进行第一次臭氧消杀,第一次臭氧消杀后的气体进入二级臭氧消杀段(2-5)进行第二次臭氧消杀,第二次臭氧消杀后的气体进入紫外消杀段(2-3)进行紫外线消杀,紫外线消杀后的气体进入残余臭氧控制段(2-6),残余臭氧控制段(2-6)对紫外线消杀后的气体中残留的臭氧进行还原反应,还原后的气体重新被送入仓储设备(3)内,从而实现对从仓储设备(3)内抽取的气体的消杀。First, the gas in the storage equipment (3) is extracted through the circulating fan section (2-7), and the extracted gas is swirled through the return air section (2-1) of the storage area in turn and then enters the medium-efficiency filter section (2- 2) Filtering, the filtered gas enters the first-level ozone sterilization section (2-4) for the first ozone sterilization, and the gas after the first ozone sterilization enters the second-level ozone sterilization section (2-5) Carry out the second ozone sterilization, the gas after the second ozone sterilization enters the ultraviolet sterilization section (2-3) for ultraviolet sterilization, and the gas after the ultraviolet sterilization enters the residual ozone control section (2-6), and the residual The ozone control section (2-6) performs a reduction reaction on the residual ozone in the gas after the ultraviolet sterilization, and the reduced gas is sent into the storage equipment (3) again, so as to realize the reduction of the ozone extracted from the storage equipment (3). Gas elimination. 7.根据权利要求2所述的采用冷链物流仓储消杀集成装置实现的消杀方法,其特征在于,臭氧发生器(1-4)第一和第二输出端口与仓储区空气循环消杀净化装置(2)之间的连通管路上均设有臭氧气体流量计(12)。7. The sterilization method realized by adopting a cold chain logistics storage and sterilization integrated device according to claim 2, wherein the first and second output ports of the ozone generator (1-4) and the air circulation sterilization in the storage area The communication pipelines between the purification devices (2) are all provided with ozone gas flow meters (12). 8.根据权利要求2或7所述的采用冷链物流仓储消杀集成装置实现的消杀方法,其特征在于,臭氧发生器(1-4)第一和第二输出端口与仓储区空气循环消杀净化装置(2)之间的连通管路上均设有止回阀和电磁阀;8. The sterilization method realized by adopting the cold chain logistics storage and sterilization integrated device according to claim 2 or 7, wherein the first and second output ports of the ozone generator (1-4) are circulated with the air in the storage area A check valve and a solenoid valve are provided on the communication pipelines between the disinfecting and purifying devices (2); 臭氧发生器(1-4)第三输出端口与喷嘴(1-11)连通的管路上也设有止回阀和电磁阀;A check valve and a solenoid valve are also provided on the pipeline connecting the third output port of the ozone generator (1-4) with the nozzle (1-11); 臭氧发生器(1-4)第四输出端口与喷嘴(1-11)连通的所有管路上也设有止回阀和电磁阀;All pipelines connecting the fourth output port of the ozone generator (1-4) with the nozzle (1-11) are also provided with check valves and solenoid valves; 配电及自动控制柜(1-9),还用于对所有电磁阀进行控制。Power distribution and automatic control cabinets (1-9) are also used to control all solenoid valves. 9.根据权利要求5或6所述的采用冷链物流仓储消杀集成装置实现的消杀方法,其特征在于,仓储区空气循环消杀净化装置(2)内部的相邻两段之间设有整流装置(4),整流装置(4)用于对其输入的气体进行整流,使其输出均匀的气体流。9. The sterilization method realized by adopting the integrated device for storage and sterilization of cold chain logistics according to claim 5 or 6, characterized in that, between two adjacent sections inside the air circulation sterilization and purification device (2) in the storage area, a There is a rectifying device (4), and the rectifying device (4) is used to rectify the gas input to it, so as to make it output a uniform gas flow. 10.根据权利要求5或6所述的采用冷链物流仓储消杀集成装置实现的消杀方法,其特征在于,紫外消杀段(2-3)采用紫外消杀灯组实现;10. The sterilization method realized by adopting a cold chain logistics storage sterilization integrated device according to claim 5 or 6, wherein the ultraviolet sterilization section (2-3) is realized by an ultraviolet sterilization lamp group; 循环风机段(2-7)采用循环风机实现;The circulating fan section (2-7) is realized by the circulating fan; 残余臭氧控制段(2-6)采用填料层实现,且填料层内填充有活性炭、活性炭纤维、负载有纳米铁的活性炭或负载有纳米铁的活性炭纤维中的一种或多种。The residual ozone control section (2-6) is realized by a filler layer, and the filler layer is filled with one or more of activated carbon, activated carbon fiber, nano-iron-loaded activated carbon, or nano-iron-loaded activated carbon fiber.
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