Epelle et al., 2023 - Google Patents
Ozone application in different industries: A review of recent developmentsEpelle et al., 2023
View HTML- Document ID
- 999514581044762034
- Author
- Epelle E
- Macfarlane A
- Cusack M
- Burns A
- Okolie J
- Mackay W
- Rateb M
- Yaseen M
- Publication year
- Publication venue
- Chemical Engineering Journal
External Links
Snippet
Ozone–a powerful antimicrobial agent, has been extensively applied for decontamination purposes in several industries (including food, water treatment, pharmaceuticals, textiles, healthcare, and the medical sectors). The advent of the COVID-19 pandemic has led to …
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Epelle et al. | Ozone application in different industries: A review of recent developments | |
O'connor et al. | Cold atmospheric pressure plasma and decontamination. Can it contribute to preventing hospital-acquired infections? | |
Pavlovich et al. | Ozone correlates with antibacterial effects from indirect air dielectric barrier discharge treatment of water | |
Pavlovich et al. | Quantification of air plasma chemistry for surface disinfection | |
Hänsch et al. | Analysis of antibacterial efficacy of plasma-treated sodium chloride solutions | |
Nguyen et al. | The potential use of hypochlorous acid and a smart prefabricated sanitising chamber to reduce occupation-related COVID-19 exposure | |
Zare et al. | Antimicrobial carbon materials-based quantum dots: From synthesis strategies to antibacterial properties for diagnostic and therapeutic applications in wound healing | |
Chiappim et al. | Nebulized plasma‐activated water has an effective antimicrobial effect on medically relevant microbial species and maintains its physicochemical properties in tube lengths from 0.1 up to 1.0 m | |
WO2014030992A3 (en) | Antiseptic, seboregulating and exfolitating composition for treating or preventing acne | |
Sheikh et al. | Classic and alternative disinfection practices for preventing of hospital-acquired infections: a systemic review | |
Yemiş et al. | Classification, Uses and Environmental Implications of Disinfectants. | |
Osman et al. | Plasma-activated vapor for sanitization of hands | |
Abdo et al. | Cold plasma therapy as a physical antibiofilm approach | |
Lozina et al. | Multifunctional DBD-Based Ozone Sterilizer with Ultrasonic Cavitation for Low-Temperature Treatment of Medical Tools | |
Ke et al. | Potassium iodide potentiates bacterial killing by helium atmospheric pressure plasma jet | |
PE20040586A1 (en) | PROCEDURE TO PREPARE NEVIRAPINE | |
Wiwanitkit | Antiviral drug treatment for emerging swine flu | |
Kamlaskar et al. | Automatic room sanitization using UV-C tubes | |
Wang et al. | Upgrading the production of plasma-activated water for sterilization by preloading long-lived reactive species | |
US20230346998A1 (en) | Misty plasma dielectric barrier discharge plasma system for disinfection | |
Pines | Narrowing the gap between efficacy and effectiveness using the TIDieR checklist | |
Bandewar et al. | Plasma Technology in Disinfection and Sterilization: Core Principles and Emerging Innovations for Biological Applications | |
Bostănaru et al. | Long thermal interactions of PAW with normal tooth structure and different dental biomaterials | |
Shimizu et al. | Atmospheric Plasma in Medicine: Chronic Wound Disinfection | |
Nandini et al. | Validation of N95 respirator mask for the Re-use in the pandemic crisis |