CN106573226A - Production method for fine-particle-adsorbing material - Google Patents
Production method for fine-particle-adsorbing material Download PDFInfo
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- CN106573226A CN106573226A CN201580040812.1A CN201580040812A CN106573226A CN 106573226 A CN106573226 A CN 106573226A CN 201580040812 A CN201580040812 A CN 201580040812A CN 106573226 A CN106573226 A CN 106573226A
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- liquid
- manufacture method
- microgranule
- medulla junci
- marrow
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01J—CHEMICAL OR PHYSICAL PROCESSES, e.g. CATALYSIS OR COLLOID CHEMISTRY; THEIR RELEVANT APPARATUS
- B01J20/00—Solid sorbent compositions or filter aid compositions; Sorbents for chromatography; Processes for preparing, regenerating or reactivating thereof
- B01J20/22—Solid sorbent compositions or filter aid compositions; Sorbents for chromatography; Processes for preparing, regenerating or reactivating thereof comprising organic material
- B01J20/24—Naturally occurring macromolecular compounds, e.g. humic acids or their derivatives
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01J—CHEMICAL OR PHYSICAL PROCESSES, e.g. CATALYSIS OR COLLOID CHEMISTRY; THEIR RELEVANT APPARATUS
- B01J20/00—Solid sorbent compositions or filter aid compositions; Sorbents for chromatography; Processes for preparing, regenerating or reactivating thereof
- B01J20/30—Processes for preparing, regenerating, or reactivating
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- Chemical Kinetics & Catalysis (AREA)
- Solid-Sorbent Or Filter-Aiding Compositions (AREA)
Abstract
In the present invention, the pith of soft rushes is separated from the outer skin thereof. Then, the pith separated from the outer skin is soaked in a liquid. Then, the pith that has been soaked in the liquid is sheared and ground. Then, an adhesive agent such as a starch paste is added to the sheared and ground pith. Then, the ground pith to which the adhesive agent is added is applied to a material having a net structure by spraying or the like. Accordingly, a fine-particle-adsorbing material that adsorbs fine particles, such as PM2.5, at a high adsorption rate is produced. The fine-particle-adsorbing material produced in this way can be used as a mask, a filter for an air cleaner, or the like.
Description
Technical field
The present invention relates to the manufacture method of the material of adsorbent particles.
Background technology
There is a kind of technology for making the harmful material such as Medulla Junci material formaldehyde adsorption and being removed.
For example, propose in patent documentation 1 become using Medulla Junci is imperceptibly crushed powder or thread like body it
Rear material, with harmful substance adsorbing coating, bond material, paper, twist thread, textile fabric, wall material, fabric,
The scheme of the materials such as bed-mat for summer.
Prior art literature
Patent documentation
Patent documentation 1:Japanese Unexamined Patent Publication 2002-67006 publications
The content of the invention
The invention problem to be solved
It is known to Medulla Junci to constitute by crust and by the core marrow that crust is covered, core marrow is than gases such as crust more formaldehyde adsorptions
Chemical substance.But, particle diameter PM2.5 (the Particulate Matter 2.5 bigger than the chemical substance of gas:Particulate matter
Etc. 2.5) whether microgranule (so-called in the present patent application " microgranule " refers to 1 μm~10 μm or so of microgranule) is adsorbed by Medulla Junci
It is still not clear.
The inventor of the present patent application obtains following opinion by test alone.
(1) microgranule such as Medulla Junci absorption PM2.5.
(2) crust is significantly larger than to the adsorption rate (adsorption number of per unit area) of microgranule in the core marrow of Medulla Junci.
(3) microgranules such as surface adsorption PM2.5 of branch of formation sponge structure that the core marrow in Medulla Junci has.
(4) when the crust and core marrow for not separating Medulla Junci is ground into Medulla Junci below 1mm or so, the branch of core marrow is big
It is partially destroyed that (even if the method crushed is shearing crushing, the branch structure of core marrow also substantially do not remain.).
If supplementing above-mentioned opinion, there is sponge structure (three from the core marrow for starting to be known to Medulla Junci in the past
The eyed structure of dimension).Thus, if assuming to remove the microgranules such as PM2.5 by the core marrow of Medulla Junci, it is speculated as the sponge structure and is had
The microgranules such as some mesh capture PM2.5.But, the mesh of the eyed structure that the core marrow of Medulla Junci has is 10 μm or so, is pushed away
Survey is the microgranule less than 10 μm or so of the particle diameter as PM2.5 to be captured by the core marrow of Medulla Junci.But with these supposition phases
Instead, actually as described above (3) are described, distinguished the surface of the branch of the formation sponge structure that the core marrow in Medulla Junci has
The microgranules such as absorption PM2.5.
The present invention is namely based on above-mentioned opinion and completes, and its object is to, there is provided adsorbed with higher adsorption rate
The microgranule absorption material of the microgranules such as PM2.5.
Means for solving the problems
In order to solve above-mentioned problem, the present invention provides the manufacture method that following microgranule adsorbs material as the 1st mode, should
Manufacture method has:Separation circuit, from the crust separating core marrow of Medulla Junci;Infiltration operation, makes liquid infiltrate in the separation work
In sequence from the core marrow of the detached Medulla Junci of crust;And shearing pulverizing process, to being infiltrated by liquid in the infiltration operation
The core marrow of Medulla Junci carry out shearing crushing.
In addition, the present invention provides following structure as the 2nd mode:In the manufacture method of above-mentioned 1st mode, described
After separation circuit and before the infiltration operation, with the cut-out work cut off to the core marrow from the detached Medulla Junci of crust
Sequence.
In addition, the present invention provides following structure as the 3rd mode:In the manufacture method of above-mentioned 1st mode, described
After separation circuit and before the infiltration operation, with the tear work torn to the core marrow from the detached Medulla Junci of crust
Sequence.
In addition, the present invention provides following structure as the 4th mode:In the manufacture of above-mentioned 1st to the 3rd any one mode
In method, with working procedure of coating, in the working procedure of coating, by it is described shearing pulverizing process in carried out shear crush by liquid
The core marrow of the Medulla Junci of body infiltration is coated on the material with eyed structure.
In addition, the present invention provides following structure as the 5th mode:In the manufacture method of above-mentioned 4th mode, the painting
Coating in deposited operation is the coating carried out by spraying.
In addition, the present invention provides following structure as the 6th mode:In the manufacture of above-mentioned 1st to the 3rd any one mode
In method, with mixed processes, the core marrow of the Medulla Junci infiltrated by liquid that the shearing in the shearing pulverizing process is crushed
Mix with fiber material and form mixing material;And de- liquid operation, the mixing material of the formation in the mixed processes is entered
The de- liquid of row.
In addition, the present invention provides following structure as the 7th mode:In the manufacture method of above-mentioned 6th mode, described
In de- liquid operation or after the de- liquid operation, it is compressed with the mixing material to being formed in the mixed processes
Compression section.
In addition, the present invention provides following structure as the 8th mode:In the manufacture of above-mentioned 1st to the 7th any one mode
In method, on any opportunity after the separation circuit, with the core marrow to the Medulla Junci applying work of binding agent is applied
Sequence.
In addition, the present invention provides following structure as the 9th mode:In the manufacture of above-mentioned 1st to the 3rd any one mode
In method, have:De- liquid operation, the core marrow of the Medulla Junci infiltrated by liquid that the shearing in the shearing pulverizing process is crushed
Carry out de- liquid;Working procedure of coating, applies adhesive on base material;And attachment operation, it is coated with the working procedure of coating viscous
The core marrow of after the de- liquid of the de- liquid operation, pulverized Medulla Junci is attached by the surface of the base material of mixture.
In addition, the present invention provides following structure as the 10th mode:In the system of above-mentioned 1st to the 3rd any one mode
In making method, have:
The core marrow of the Medulla Junci for shearing crushing in the shearing pulverizing process is sealing into into the plates with aeration
Inclosure operation.
Invention effect
According to the present invention, the microgranule of the core marrow for including the Medulla Junci that most of branch structure is separated and maintained from crust is produced
Absorption material.Its result is to obtain with the microgranule absorption material of the microgranules such as higher adsorption rate absorption PM2.5.
In addition, substantially not including the crust of Medulla Junci in the microgranule absorption material.Additionally, this is so-called " substantially
Not comprising crust " refer to that the micro crust for being allowed in separation circuit not separating from core marrow and being mixed into is comprised in microgranule absorption
In material.It is thus achieved that compared with the material of the crust comprising Medulla Junci, with higher adsorption rate adsorbent particles and outward appearance is excellent
Good microgranule absorption material.
Description of the drawings
Fig. 1 is the microphotograph of the structure for illustrating Medulla Junci.
Fig. 2 is the microphotograph of the appearance that the structure and microgranule of the core marrow for illustrating Medulla Junci is adsorbed.
Fig. 3 is the flow chart of the manufacture method of the microgranule absorption material for illustrating an embodiment.
Fig. 4 is illustrated from the crust extrusion core marrow of Medulla Junci and the figure of of detached method.
Fig. 5 is and its using method for illustrating the detached utensil for the crust extrusion core marrow from Medulla Junci
Figure.
Fig. 6 is the flow chart of the manufacture method of the microgranule absorption material for illustrating an embodiment.
Fig. 7 is the flow chart of the manufacture method of the microgranule absorption material for illustrating an embodiment.
Fig. 8 is the flow chart of the manufacture method of the microgranule absorption material for illustrating an embodiment.
Specific embodiment
[embodiment]
Fig. 1 is the microphotograph of the section that Medulla Junci is cut to semi-circular cylindrical on face along its length.Such as Fig. 1
Shown, the core marrow 12 that Medulla Junci 1 covers by crust 11 and by crust 11 is constituted.
Fig. 2 is the aobvious of the core marrow of the Medulla Junci in the extraneous air that the microgranules such as PM2.5 are suspended after the exposure stipulated time
Micro mirror photo.As shown in Fig. 2 the core marrow of Medulla Junci has sponge structure (three-dimensional eyed structure), the sponge structure is being formed
Branch surface adsorption microgranule 2.
[the 1st embodiment]
Fig. 3 is the flow chart of the manufacture method of the microgranule absorption material for illustrating an embodiment of the invention.First, from
Crust separates the core marrow (separation circuit, step S11) of Medulla Junci.In step s 11, as the method energy from crust separating core marrow
Enough using following illustrated method, but it is not limited to this.
(1) peeled off by way of peeling crust off from core marrow and separated.
(2) end of a side of shorter the Medulla Junci cut off is placed on platform and is pressed, by making rod etc. while squeezing
Pressure is separated (Fig. 4) while move from the end towards the end of the opposing party so as to extrusion core marrow.
(3) be pressed into the diameter extruded rod less than the internal diameter of crust in the axial direction of shorter the Medulla Junci cut off, by from
Extrusion core marrow in crust and separate.
(4) by revealing on the section that the Medulla Junci that semi-circular cylindrical is cut on face along its length is drawn out with rod etc.
The core marrow for going out is being separated.
Fig. 5 is the figure for illustrating utensil and its using method in order to invent alone from crust separating core marrow.Shown in Fig. 5
Utensil 3 has the cutter part 31 that crack is produced on crust and draws out the spoon shape of core marrow draws out portion 32.
Operator inserts at the point of a knife of cutter part 31 near a square end portion of the Medulla Junci 1 for cutting into such as 5cm or so
After Medulla Junci 1, utensil 3 is set to slide to the opposing party's end direction of Medulla Junci 1.Now, cutter part 31 cuts off along its length lamp
The crust of heart grass 1 and portion 32 is drawn out from drawing out core marrow between the crust for being cut off.
Fig. 3 is returned, continues the explanation of the manufacture method of the microgranule absorption material of the present embodiment.Then, or with shears etc.
The shearing device such as utensil or chipper cutting off core marrow (cut off operation) detached from crust, or by tearing (tear operation)
And become general specific length (such as 1mm~1cm or so) (step S12).Additionally, by carrying out to core marrow in step s 12
Cut off or tear and outward appearance (style) difference of final manufactured microgranule absorption material.Additionally, cut off operation or tear operation
Can also be omitted according to purpose.
Then, liquid infiltration is made to arrive from the detached core marrow of crust (either from after crust separation by cut-out or tear
Become shorter core marrow) in (infiltration operation, step S13).The liquid used to infiltrate core marrow in infiltration operation is for example
It is water, but is not limited to this.In addition, the amount of the liquid used to infiltrate core marrow in infiltration operation is for example in the liquid
In the case of water, it is 300cc~400cc or so to be contemplated to be to every 1g cores marrow.The inventor of the present patent application confirms passing through
Crush efficiency in the case that experiment has used the water of the amount of the ratio outside above range, in shearing pulverizing process as described below
Reduce.
Then, the core marrow infiltrated by liquid (liquid comprising not infiltrating to the core marrow used in infiltration operation) is put into and is cut
Pulverizer is cut, shearing crushing (shearing pulverizing process, step S14) is carried out.Here, so-called shearing crushing is referred to and utilizes sheaves
Sword carries out shearing to crush to core marrow, not comprising for example by the crushing ground to carry out of ball mill or former etc..
By being crushed using shearing in the crushing of core marrow, the branch great majority of core marrow are not destroyed and left behind.Therefore,
The ability of the microgranule such as surface adsorption PM2.5 in branch will not be reduced due to crushing.Additionally, having been described that Shen of the present invention before
Inventor please is found that in the case where directly shearing crushing is not carried out to crust and core marrow from crust separating core marrow, when outer
When skin is crushed to below 1mm or so, the branch structure of core marrow is not substantially remained.
In addition, in the case where shearing crushing is carried out, if the core marrow of the drying without infiltration operation is added to cut
When cutting pulverizer, it is impossible to which core marrow is ground into into less than 100 μm or so of particle diameter.It is speculated as this is because there is core marrow sponge to tie
Structure, thus core marrow by shearing knife edge rotation etc. produced by wind-force move and avoid caused by shearing knife edge.This
The inventor of patent application carries out various experiments and is found that by carrying out shearing crushing in the state of core marrow is infiltrated by liquid,
The core marrow of sponge structure can be made to maintain its structure and be capable of the particle diameter of microminiaturization to less than 100 μm or so.
Then, binding agent (applying step, step S15) is being applied comprising being sheared in the liquid of the core marrow of crushing.Applying
Plus the binding agent used in operation is, for example, gelatinized corn starch, but it is not limited to this.Wherein, expect to use harmful possibility
Property it is relatively low from vegeto-animal binding agent (such as rice paste, glue, gloiopeltis etc.).Additionally, applying step can also be according to purpose
And omit.
Then, the liquid material comprising the core marrow being micronized formed through above-mentioned operation is coated to and is had
In the material of eyed structure (working procedure of coating, step S16).The material with eyed structure used in working procedure of coating is for example
It is drainage screen of gauze, non-woven fabrics, air cleaning machine etc., but is not limited to this.
In addition, the coating method in working procedure of coating is e.g. sprayed, but it is not limited to this, it is also possible to according to purpose or coating
Characteristic of object etc. and adopt brush, impregnating.
Then, the material with eyed structure to being coated with the liquid material comprising the core marrow being micronized enters
Row is dried (drying process, step S17).Thus, the microgranule absorption material of the present embodiment is produced.So microgranule absorption of manufacture
Material is for example used as the drainage screen of mask or air cleaning machine, but its purposes is not limited to this.
Additionally, using shearing pulverizing process or applying step formed comprising the liquid of the core marrow being micronized
Material itself can be used as microgranule absorption material and be supplied to user.User is sprayed to by the way that the microgranule is adsorbed into material
Drainage screen of such as mask on the market or air cleaning machine etc. such that it is able to easily in existing mask or drainage screen
Upper additional particle absorption property.In addition, user is coated to oneself by the way that the microgranule is adsorbed into material by spraying, brushing etc.
Wall is first-class, and being capable of the easily additional particle absorbability on existing wall etc..And, user is by the way that the microgranule is inhaled
Attached material is sprayed to for example aerial such that it is able to remove the skyborne microgranule that suspends.
[the 2nd embodiment]
Fig. 6 is the flow chart of the manufacture method of the microgranule absorption material for illustrating other embodiments of the present invention.In this reality
Apply the operation of the step of carrying out in the manufacture method of example S21~S24 and the operation of S11~S14 the step of the flow process shown in Fig. 3
It is identical.
In the present embodiment, the and then shearing pulverizing process of step S24, by comprising the liquid of the core marrow being micronized
Material (the core marrow for being infiltrated and being crushed by liquid) mix with fiber material, and form the mixing element of core marrow and fiber material
Material (mixed processes, step S25).Fiber material used in mixed processes is, for example, cotton, but is not limited to this.In addition,
As the method mixed with fiber material to the liquid material comprising the core marrow being micronized, example in mixed processes
If using being stirred with stirring rod or rubbed while mixing, but be not limited to this with the handss of operator.
Then, the mixing material to being formed in mixed processes carries out de- liquid (de- liquid operation, step S26).As de- liquid
Method, for example can be using making mixing material drop from network either with net filtration (or copying) mixing material etc., but not
It is limited to this.
Then, the mixing material that liquid is taken off in de- liquid operation is shaped to into the substantially uniform shape of thickness (trimming, step
Rapid S27).Additionally, in mixed processes, in the case where mixing material carries out de- liquid with the state being shaped, it is also possible to omit
Trimming.
Then, the mixing material of taken off liquid is compressed (compression section, step S28).Method as compressing, for example
The method for mixing material being sandwiched with 2 compression plates and being pressurizeed can be adopted, but is not limited to this.Additionally, compression section
Main purpose is to make the lower thickness of material and improve intensity.
Then, binding agent (applying step, step S29) is applied in the mixing material for being compressed.The applying step with
The step of flow process shown in Fig. 3, the operation of S15 was identical.
Then, the mixing material to being applied with binding agent is further compressed (compression section, step S210).The compression
Operation is identical with the operation of step S28.In addition it is also possible to omit any one party in step S28 and step S210.
Then, the mixing material for being compressed to being applied with binding agent is dried (drying process, step S211).By
This, produces the microgranule absorption material of the present embodiment.The microgranule absorption material of so manufacture is for example used as wall material, but it is used
Way is not limited to this.
[the 3rd embodiment]
Fig. 7 is the flow chart of the manufacture method of the microgranule absorption material for illustrating other embodiments of the present invention.In this reality
Apply the operation of the step of carrying out in the manufacture method of example S31~S34 and the operation of S11~S14 the step of the flow process shown in Fig. 3
It is identical.But, in the infiltration operation in step S33, in the particle diameter of core marrow the purposes of material is adsorbed according to manufactured microgranule
Deng and can also it is larger in the case of, compare with the situation of the infiltration operation in step S13, it is also possible to reduce liquid phase for core
The amount of marrow.So, by reducing the amount of the liquid used relative to core marrow, and the shearing crushing in step S34 can be increased
The particle diameter of the core marrow of middle formation.
In the present embodiment, the and then shearing pulverizing process of step S34, is carried out and S26 the step of flow process shown in Fig. 6
Identical takes off liquid (de- liquid operation, step S35).Then, (back tender is dried to core marrow after by de- liquid, being micronized
Sequence, step S36).
Then, the surface (working procedure of coating, step S37) of the base material for separately preparing is applied adhesive to.In step S37
The base material for being used for example using fiber materials such as plates, the gauzes such as plate body, paper etc., but can be not limited to this.In addition,
Binding agent used in step S37 is, for example, gelatinized corn starch, but is not limited to this.Wherein, expect using harmful
Probability it is relatively low from vegeto-animal binding agent (such as rice paste, glue, gloiopeltis etc.).In addition, by binding agent in step S37
The method for being coated on base material can be spray, brush, impregnating any one.Additionally, step S37 can also with step S31~
S36 is carried out parallel.
Then, the core marrow being micronized being dried in step S36 is attached to has carried out binding agent in step S37
The surface (attachment operation, step S38) of the base material of coating.The method of the attachment in step S38 can be using for example in loading quilt
The method of the base material for being coated with binding agent is put into and perfused in the container of the core marrow of miniaturization, the core marrow being micronized is sprayed onto into painting
The methods such as the base material of binding agent are applied, but has been not limited to this.
Then, the binding agent on the surface to the core being micronized marrow is attached to into base material is dried (drying process, step
S39).Thus, the microgranule absorption material of the present embodiment is produced.So the microgranule of manufacture adsorbs material according to the classification of base material
For example use as wall material, wallpaper, mask etc., but its purposes is not limited to this.
In addition it is also possible to carry out cladding operation after step S38 or step S39, the cladding operation is due to attachment
Have in the peeling of the core marrow of base material, the surface of the base material of core marrow is attached to the cladding of the plates with aeration.
In addition, adsorbing the purposes of material according to manufactured microgranule, the size of core marrow can also be 1mm~1cm or so
Size.In this case, if cutting off the size of core marrow in step s 32 or tearing into desired size, can also
Omit step S33~S36.
Microgranule with regard to being manufactured by the manufacture method of the present embodiment adsorbs material because the surface of core marrow it is most of not by
Adhesive coverage, even if therefore improve the concentration of binding agent for for example being used, microgranule also will not be reduced due to binding agent
Adsorption effect, shows higher absorption property.
[the 4th embodiment]
Fig. 8 is the flow chart of the manufacture method of the microgranule absorption material for illustrating other embodiments of the present invention.In this reality
Apply the operation of the step of carrying out in the manufacture method of example S41~S44 and the operation of S11~S14 the step of the flow process shown in Fig. 3
It is identical.But, in the infiltration operation in step S43, compared with the situation of the infiltration operation in step S13, expect to reduce liquid
Body phase is for the amount of core marrow.For example, in the case where water is used as the liquid for being used, expect to be used relative to 1g core marrows
The water of 100cc~200cc or so.So, by reducing the amount of the liquid used relative to core marrow, and can increase in step
The particle diameter of the core marrow that the shearing of S44 is formed in crushing.The particle diameter of the core marrow formed in step S44 is, for example, 100 μm~1mm
Left and right.
Then, de- liquid operation (step S45) and drying process (step S46) are carried out.The step of step S45~S46 and Fig. 7
S35~S36 is identical.
Then, will be sealing in the plates with aeration by core marrow that is dry, being micronized and (enclose operation, step
Rapid S47).Plates used in step S47 can for example adopt piece, cotton, burlap, the less Buddhist nun of mesh of non-woven fabrics
Piece of imperial mesh etc., but it is not limited to this.In addition, as the method for the inclosure in step S47, such as can adopt from advance shape
The peristome for becoming bag-shaped plates is put into after the core marrow being micronized the opening that plates are closed by sewing or bonding etc.
The method in portion sandwiches the state of the core marrow being micronized suturing method of this 2 plates etc. between 2 plates,
But it is not limited to this.
Additionally, step S45 can also simultaneously be carried out with step S47.In this case, plates are played for taking off liquid
The effect of net.In addition, in this case, step S46 is carried out after step S47.
In addition, adsorbing the purposes of material according to manufactured microgranule, the size of core marrow can also be 1mm~1cm or so
Size.In this case, if cutting off or tearing into desired size by the size of core marrow in step S42, it is also possible to save
Slightly step S43~S46.
The microgranule absorption material of so manufacture is for example used as drainage screen or wall material (built-in material) etc., but its purposes is simultaneously
Not limited to this.For example, it is also possible to be configured to the absorption material of the microgranule comprising the present invention in Clean- of stain is wiped.At this
In the case of kind, using Clean- the microgranules such as PM2.5 are effectively removed.Alternatively, it is also possible to be configured to for cleanser, hair washing
Essence, bath gel, the gel of scrubbing cream (method that older cutin is removed from body using natural materials) or paste etc. are each
Plant the microgranule absorption material comprising the present invention in cosmetics.In this case, it is effectively attached from body removing as stain
The microgranule such as PM2.5 in body.In addition, also confirming when the scrubbing cream for using the absorption material of the microgranule comprising the present invention
During the rubdown such as gel or paste, pass through the shape or appropriate hardness of the lampwick of crushed Medulla Junci, will not injure
Body and the removing of older cutin can be carried out.
Above-mentioned manufacture method is an embodiment of the invention, can be entered in the range of the technological thought of the present invention
Row various modifications.
For example, the flow process of the manufacture method shown in Fig. 3, Fig. 6~Fig. 8 is one, can change and constitute those manufacture methods
Operation order a part.For example, in material apply binding agent applying step, as long as after separation circuit when
Machine, it is possible to carry out simultaneously in operation, shearing pulverizing process is for example infiltrated, it is also possible to enter between those operations or in front and back
OK.
Label declaration
1:Medulla Junci;11:Crust;12:Core marrow;2:Microgranule;3:Utensil;31:Cutter part;32:Draw out portion.
Claims (10)
1. a kind of microgranule adsorbs the manufacture method of material, and it has:
Separation circuit, from the crust separating core marrow of Medulla Junci;
Infiltration operation, make liquid infiltration in the separation circuit from the core marrow of the detached Medulla Junci of crust;And
Shearing pulverizing process, the core marrow of the Medulla Junci to being infiltrated by liquid in the infiltration operation carries out shearing crushing.
2. microgranule according to claim 1 adsorbs the manufacture method of material, wherein,
After the separation circuit and before the infiltration operation, with cutting to the core marrow from the detached Medulla Junci of crust
Disconnected cut off operation.
3. microgranule according to claim 1 adsorbs the manufacture method of material, wherein,
After the separation circuit and before the infiltration operation, with tearing to the core marrow from the detached Medulla Junci of crust
The tear operation split.
4. microgranule as claimed in any of claims 1 to 3 adsorbs the manufacture method of material, wherein,
The manufacture method has working procedure of coating, in the working procedure of coating, the quilt of crushing will be sheared in the shearing pulverizing process
The core marrow of the Medulla Junci of liquid infiltration is coated on the material with eyed structure.
5. microgranule according to claim 4 adsorbs the manufacture method of material, wherein,
Coating in the working procedure of coating is the coating carried out by spraying.
6. microgranule as claimed in any of claims 1 to 3 adsorbs the manufacture method of material, wherein, the manufacture method
Have:
Mixed processes, the core marrow and cellulose of the Medulla Junci infiltrated by liquid that the shearing in the shearing pulverizing process is crushed
Material mixes and forms mixing material;And
De- liquid operation, the mixing material to being formed by the mixed processes carries out de- liquid.
7. microgranule according to claim 6 adsorbs the manufacture method of material, wherein,
In the de- liquid operation or after the de- liquid operation, with the mixing element to being formed in the mixed processes
The compression section that material is compressed.
8. microgranule as claimed in any of claims 1 to 7 adsorbs the manufacture method of material, wherein,
On any opportunity after the separation circuit, with the core marrow to the Medulla Junci applying step of binding agent is applied.
9. microgranule as claimed in any of claims 1 to 3 adsorbs the manufacture method of material, wherein, the manufacture method
Have:
De- liquid operation, the core marrow to having carried out shearing the Medulla Junci infiltrated by liquid crushed in the shearing pulverizing process enters
The de- liquid of row;
Working procedure of coating, applies adhesive on base material;And
Attachment operation, be coated with the working procedure of coating on the surface of the base material of binding agent be attached by the de- liquid operation take off
The core marrow of after liquid, pulverized Medulla Junci.
10. microgranule as claimed in any of claims 1 to 3 adsorbs the manufacture method of material, wherein, the manufacture method
Have:
Operation is enclosed, the core marrow of the Medulla Junci for shearing crushing in the shearing pulverizing process is sealing into into the piece with aeration
In shape body.
Applications Claiming Priority (3)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP2014156439A JP5639302B1 (en) | 2014-07-31 | 2014-07-31 | Manufacturing method of particulate adsorption material |
JP2014-156439 | 2014-07-31 | ||
PCT/JP2015/071797 WO2016017800A1 (en) | 2014-07-31 | 2015-07-31 | Production method for fine-particle-adsorbing material |
Publications (2)
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CN108049254A (en) * | 2017-12-11 | 2018-05-18 | 成都宏恩生物科技有限公司 | Particulate air filter paper based on rush core fibre particle and preparation method thereof |
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CN106403083B (en) * | 2016-11-09 | 2021-11-19 | 北京工业大学 | Air humidifying, dust cleaning and cooling device for spraying straw core |
CN106621589A (en) * | 2016-12-09 | 2017-05-10 | 钦州市钦南区科学技术情报研究所 | Anti-haze spraying agent and preparation method thereof |
CN106902573B (en) * | 2017-04-01 | 2020-01-17 | 成都宏恩生物科技有限公司 | Application of rush core, filter structure and filter device formed by rush core and preparation method of filter device |
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CN108049254A (en) * | 2017-12-11 | 2018-05-18 | 成都宏恩生物科技有限公司 | Particulate air filter paper based on rush core fibre particle and preparation method thereof |
Also Published As
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JP2016032793A (en) | 2016-03-10 |
JP5639302B1 (en) | 2014-12-10 |
WO2016017800A1 (en) | 2016-02-04 |
CN106573226B (en) | 2020-02-14 |
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