Nghiên cứu cải tiến quy trình điều chế dung dịch siêu oxy hóa và ứng dụng trong khử trùng nước thải bệnh viện (Luận án tiến sĩ)

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Nghiên cứu cải tiến quy trình điều chế dung dịch siêu oxy hóa và ứng dụng trong khử trùng nước thải bệnh viện (Luận án tiến sĩ)

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Nghiên cứu cải tiến quy trình điều chế dung dịch siêu oxy hóa và ứng dụng trong khử trùng nước thải bệnh việnNghiên cứu cải tiến quy trình điều chế dung dịch siêu oxy hóa và ứng dụng trong khử trùng nước thải bệnh việnNghiên cứu cải tiến quy trình điều chế dung dịch siêu oxy hóa và ứng dụng trong khử trùng nước thải bệnh việnNghiên cứu cải tiến quy trình điều chế dung dịch siêu oxy hóa và ứng dụng trong khử trùng nước thải bệnh việnNghiên cứu cải tiến quy trình điều chế dung dịch siêu oxy hóa và ứng dụng trong khử trùng nước thải bệnh việnNghiên cứu cải tiến quy trình điều chế dung dịch siêu oxy hóa và ứng dụng trong khử trùng nước thải bệnh việnNghiên cứu cải tiến quy trình điều chế dung dịch siêu oxy hóa và ứng dụng trong khử trùng nước thải bệnh việnNghiên cứu cải tiến quy trình điều chế dung dịch siêu oxy hóa và ứng dụng trong khử trùng nước thải bệnh việnNghiên cứu cải tiến quy trình điều chế dung dịch siêu oxy hóa và ứng dụng trong khử trùng nước thải bệnh viện

- - 2018 - Chuy n ng M : 62 52 03 20 PGS PGS Khoa Khoa - , PGS.TSKH - m C Nam) , , ANK (Activated Neutral Anolyte) BOD (Biochemical oxygen Demand): N COD (ch oxy DNA (deoxyribonucleic acid): axit nucleic EPA ( FEM (flow-through electrolytic module HAAs (Haloacetic acids): Axit Haloacetic MB- -11 MDL ( MQL: Direct Current): N ORP (Oxidation reduction OSHA (the Occupational Safety and Health Administration) PAC (Poly Aluminum Chloride QCVN: SMEWW (Standard Methods for the Examination of Water and Waste Water): electrochemistry) Supowa (Super-Oxidized Water): D TOC (Total Organic Carbon): C THM: trihalogen methan VK: V PA PC 19 25 32 32 36 37 37 38 40 41 46 46 46 1.1 1.1.1 1.1.2 1.1.3 1.2 1.2.1 1.2.2 1.3 1.3.1 1.3.2 1.3.3 1.3.4 2.1 2.2 2.2.1 46 2.2.2 51 52 54 2.2.3 2.2.4 2.3 54 2.3.1 55 2.3.2 BOD5 2.3.3 amoni, 56 59 2.3.4 2.4 2.5 3.1 3.1.1 59 60 61 65 65 65 3.1.2 catolit 75 3.1.3 3.1.4 3.2 3.2.1 3.2.2 3.2.3 3.2.4 3.3 83 91 supowa 92 92 96 97 98 99 3.3.1 3.3.2 3.3.3 99 113 129 130 132 134 12 28 32 36 64 .71 72 .81 81 c 84 91 -11 95 98 coliform 111 10 .112 120 121 123 123 124 124 15 .7 ng cong th a m t ch 22 12 -11 13 .19 21 o 22 -30-ECO-C 23 ts u ch anolit c AWA-D- 2.1 26 .27 29 -ANK-PRO-01 47 -11 49 .56 + 56 57 57 65 .67 .68 68 70 .71 73 ng c a s d n c a dung d ch catolit 136 b ( h a h a: C ng bi n: GS V M Bakhir, C c Vitold Bakhir, 2005, tr.176) - 17 ., 2003, 136-139, (C c c Khoa tr ng 139) 18 , 2005, n ng h a xanh h a v C ng khoa qu tr nh ho n v uh a tr ng khoa to n Nga v c c ph p M., tr.136- Hoang Yu.-R., Hung Ye.-C., Hsu Sh.-Y, Huang Y.-W., Hwang D.-F Application of electrolyzed water in the food industry Food Control Review, 2008, 19, 329-345 19 Aquaclor: v c ng l m h a: S ng , 2014) n DelfinGroup, 2014 ( nguy n l c ng tr ng ti n Trong s ch: V M Bakhir h a v C ng NXB M.: Delfin Group, 20 2003, 4, 14-18 (HH H c c c ng y tr ng: v , 2003, 4, 14-18, 2003) , ph p TC Th ng tin B u Dung Khoa h a nhi n v 21 Ho i Ch u, V.M Bakhir, Ng h a c ng v Nh c ng 2015 22 Vitold Bakhir Electrochemical Systems & Technologies Institute, 137 www.vbinstitute.org/equipment/ /stel/super/ 2015 23 -T/21, 2010 24 Khoa h , 2012, 50 (6), 923-941 25 10 ( tr n ng l c c , 1981, 16 (1), 8trong qu tr nh l n 26 .( v sinh h l h a 27 Yahagi, N., Kono, M., Kitahara, M., Ohmura, A., Sumita, O & Hashimoto, T Effect of electrolyzed water on wound healing Artificial Organs, 2000, 24(12), 984-987 28 Inoue, Y., Endo, S., Kondo K., Ito, H., Omori H Saito K Trial of electrolyzed strong acid aqueous solution lavage in the treatment of peritonitis and intraperitoneal abscess Artificial Organs, 1997, 21 (1), 28-31 29 Leonov B I., Bakhir V M & Vtorenko V I Electrochemical activation in the practice of medicine / in: 2nd International Symposium Proc rep and brief reports Moscow, 1999, 1, 15 23 [in Russian] 30 Kirkpatrick R D The Mechanism of antimicrobial action of electrochemically activated (ECA) water and its healthcare applications Doctoral Thesis, University of Pretoria 2009 138 31 - -Salgado, Miguel valuation of the Antimicrobial Activity of a Super Oxidized Solution in Clinical Isolates Microbial Drug Resistance, 2014, 21(4), 367-372 32 Reynolds D M Electrochemically activated solutions: evidence for antimicrobial efficacy and applications in healthcare environments European Journal of Clinical Microbiology Infection Disifection, 2012, 31 (5), 641-653 33 Chaidez C., Lopez J and Castro-del Campo N Quaternary ammonium compounds: an alternative disinfection method for fresh produce wash water Journal of Water Health, 2007, 5, 329 333 34 Wijesinghe L P., Weerasinghe T K A study on the bactericidal Ousl Journal, 2010, 6, 44-58 35 Robinson G M Evaluation of the efficacy of electrochemically activated solutions against nosocomial pathogens and bacterial endospores Letters in Applied Microbiology, 2010, 50 (3), 289-294 36 Banerjee T., Anupurba S Microbiological activity of superoxidized water for disinfection in ICU environment Indian Journal of Preventive & Social Medicine, 2011, 42, 342-345 37 Acworth I.N., Oxon D.P The handbook of Redox Biochemistry ESA Inc 2003 38 William A Rutala and David J Weber New Disinfection and Sterilization Methods Emerging Infectious Diseases, 2001, (2), 348353 39 American Council on Exercise (ACE) Study Investigates Super Oxygenated Water Claims Posted in ACE Press Releases https://www.acefitness.org/pressroom/238/american-council-onexercise-ace-study/.2001 139 40 Fiza Sarwar, Aroos Munir, Ilyas Ahmed Faridi A Study of Waste Water Treatment of Microbiological Laboratories of Hospitals by Electrolyzed Oxidized Water Global Journal of Health Science, 2011, (1), 150-154 41 Len S V., Hung Y C., Erickson M et al Ultraviolet spectrophotometric characterization and bactericidal properties of electrolyzed Journal of Food Protection, 2000, 63, 1534-1537 42 Liato V., Labrie S., Benali M., Aider M Ion exchange membraneassisted electro-activation of aqueous solutions: Effect of the operating parameters on solutions properties and system electric resistance Process Safety and Environmental Protection, 2015, 93, 124-138 43 Gareth Robinson, Robin Thorn and Darren Reynolds The Effect of Long-Term Storage on the Physiochemical and Bactericidal Properties of Electrochemically Activated Solutions International Journal of Molecular Sciences, 2013, 14, 457-469 44 Fabrizio K A., Cutter C N Stability of electrolyzed oxidizing water and its efficacy against cell suspensions of Salmonella typhimurium and Listeria monocytogenes Journal of Food Protection, 2003, 66, 13791384 45 Hsu S., Kao H Effects of storage conditions on chemical and physical properties of electrolyzed oxidizing water Journal of Food Engineering., 2004, 65, 465-471 46 Cui X., Shang Y., Shi Z., Xin H., Cao W Physicochemical properties and bactericidal efficiency of neutral and acidic electrolyzed water under different storage conditions Journal of Food Engineering, 2009, 91, 582-586 47 Nisola G.M., Yang X Disinfection performances of stored acidic and neutral electrolyzed waters generated from brine solution Journal of Environmental Science and Health Part A, Toxic/Hazardous Substances 140 & Environmental Engineering, 2011, 46, 263-270 48 Soo-Voon Len, Yen-on Hung, Donghwan Chung, James L Anderson, Marilyn C Erickson, and Kazuo Morita Effects of storage conditions and pH on chlorine loss in electrolyzed oxidizing (EO) water Journal of Agricultural and food chemistry, 2002, 50, 209-221 49 Xiao-Ting Xuan Storage stability of slightly acidic electrolyzed water and circulating electrolyzed water and their property changes after application Journal of Food Science, 2016, 81.(3), 610-617 50 Minimal Access Therapy Decontamination Working Group Decontamination of minimally invasive surgical endoscopes and accessories Journal Hospital Infection, 2000, 45, 263-277 51 Horiba N., Hiratsuka K., Onoe T., et al Bactericidal effect of electrolyzed neutral water on bacteria isolated from infected root canals Oral Surgery Oral Medicine Oral Pathology Oral Radiology Endod, 1999, 87 (1), 83-87 52 Nagamatsu Y., Chen K.K, Tajima K., et al Durability of bactericidal activity in electrolyzed neutral water by storage Dental Materials Journal, 2002, 21(2), 93-104 53 Venkitanarayanan K.S., Ezeike G.O., Hung Y.C., Doyle M.P Efficacy of electrolyzed oxidizing water for inactivating Escherichia coli O157:H7, Salmonella enteritidis, and Listeria monocytogenes Applied Environmental Microbiology, 1999, 65, 4276-4279 54 Chyer Kim R E Roles of Oxidation Reduction Potential in Electrolyzed Oxidizing and Chemically Modified Water for the Inactivation of Food-Related Pathogens Journal of Food Protection, 2000, 63 (1), 19-24 55 Hoon Park, Yen-Con Hung, Donghwan Chung Effects of chlorine and O15:H7 and Listeria monocytogenes International Journal of Food 141 Microbiology, 2004, 91, 13-18 56 Hiromasa Kiura Bactericidal activity of electrolyzed acid water from solution containing sodium chloride at low concentration, in comparison with that at high concentration Journal of Microbiological Methods, 2002, 49, 285-293 57 Ding T., Xuan X.T., Liu D.H., Ye X.Q., Shi J., Warriner K., Xue S., Jones C.L Electrolyzed water generated using a circulating reactor Int Journal Food Engineering, 2015a, 11(1), 79-84 58 Liu Y.Y., Liu H.J., Tatsumi E., Li L.T The application of UV spectrophotometry in the measuring of slightly acid electrolyzed water Modern Food Science Technology, 2011, 27(11), 1393-1397 59 Okamoto M., Komagata Y., Okuda S., Nishimoto Y., Kamoshida M., Nakamura T., Komiyama K Microbicidal effect of slightly acidic electrolyzed water Bokin Bobai, 2006, 34(1), 3-10 60 Koide S., Takeda J.I., Shi J., Shono H., Atungulu G.G Disinfection Food Control, 2009, 20, 294-297 61 Ding T., Ge Z., Shi J., Xu Y.T., Jones C.L., Liu D.H Impact of slightly acidic electrolyzed water (SAEW) and ultrasound on microbial loads and quality of fresh fruits LWT - Food Science and Technology, 2015b, 60(2), 1195-1199 62 Anonymous, 1997 Electrolyzed Water Central Laboratory, Hoshizaki Electric Co., Toyoake, Aichi, Japan 63 White G C Chemistry of chlorination Handbook of chlorination & alternative disinfectants, John Wiley & Sons, Inc., New York, 4th ed., 1999, 212-287 64 Shimizu Y and Sugawara H Virucidal and bactericidal effects of electrolysed oxidizing water: Comparision of disinfectant effect of electrolysed oxidizing water and hypochlorous acid Japan Journal Oral 142 Biology, 1996, 38, 564-571 65 Leyer G.J., Johnson E.A Acid adaptation sensitizes Sal- monella typhimurium to hypochlorous acid Appl Environmental Microbiology, 1997, 63, 461-467 66 Albrich J.M., Gilbaugh J.H., Callahan K.B., Hurst J.K Effects of the putative neutrophil-generated toxin, hypochlorous acid, on membrane permeability and transport systems of Es- cherichia coli Journal of Clinical Investigation, 1986, 78 (1), 177-184 67 Barrette W.C Jr., Hannum D.M., Wheeler W.D., Hurst J.K General mechanism for the bacterial toxicity of hypo- chlorous acid: abolition of ATP production Biochemistry, 1989, 28 (23), 9172-9178 68 Hurst R H Hy- pochlorous acid and myeloperoxidase-catalyzed oxidation of reduction potential in electrolyzed oxidizing and chemically modified water for the inactivation of food-related pathogens Journal of Food Protection, 1991, 63, 19-24 69 Denyer S.P Mechanisms of action of antibacterial biocides International Biodeterioration and Biodegradation, 1995, 36 (3-4), 227245 70 Keramettin Yanik, Adil Karadag, Nevzat Unal, Hakan Odabasi, Saban Esen, Murat Gunaydin -vitro effectiveness of electrolyzed water against various microorganisms International journal of clinical and experimental medicine, 2015, 8(7), 11463-11469 71 Nishimura M, Kariya N, Hulan U, Duan CY, Shimono T Comparison of the hand disinfectant effects between super hypochlorous water and 7.5% povidone-iodine Pediatric Dental Journal, 2004, 14, 1-3 72 Landa-Solis C -Espinosa D ., Snyder M., Reyes., Torres K., Gutierrez A.A A novel super-oxidized water with neutral pH and disinfectant activity Journal of Hospital Infection, 2005, 61, 291-299 143 73 Sakurai Y., Ogoshi K., Okubo T., Kaku M., Kobayashi I Strongly acidic electrolyzed water: Valuable disinfectant of endoscopes Digestive Endoscopy, 2002, 14, 61-66 74 Tanaka N., Tanaka N., Fujisawa T, Daimon T, Fujiwara K, Yamamoto M, Abe T The use of electrolyzed solutions for the cleaning and disinfecting of dialyzers Artif Organs, 2000, 24, 921-928 75 Nakae H., Inaba H Effectiveness of electrolyzed oxidized water irrigation in a burn-wound infection model Journal of Trauma, 2000, 49, 511-514 76 Vorobjeva N.V., Vorobjeva L.I, Khodjaev E.Y The bactericidal effects of electrolyzed oxidizing water on bacterial strains involved in hospital infections Artif Organs, 2004, 28, 590-592 77 Gunaydin M., Esen S., Karadag A, Unal N, Yanik K, Odabasi H, Birinci A -oxidized water Annals Clinical Microbiology Antimicrobials, doi: 10.1186/1476-071113-29 2014 78 Martin M.V., Gallagher M.A An investigation of the efficacy of superoxidised (Optident/ Sterilox) water for the disinfection of dental unit water lines British Dental Journal, 2005, 198, 353-354 79 Selkon J.B Infection, 2001, 48 154-155 80 Waters B.W., Hung Y C The effect of organic loads on stability of various chlorine-based sanitizers Int Journal Food Science Technology, 2014a, 49, 867-875 81 Iriarte-Velasco U -Uriarte J.I -Velasco J.R Kinetics of chloroform formation from humic and fulvic acid chlorination Journal of Environmental Science and Health, 2005, 41, 1495 1508 82 Russell A., Russell A.D Factors influencing the efficacy of germicides Journal of Hospital 144 In: Rutala WA, ed Disinfection, sterilization and antisepsis: Principles, practices, challenges, and new research., Washington D.C: Association for Professionals in Infection Control and Epidemiology, 2004, 162-170 83 Johnson M., and Melbourne P of residual chlorine in potable water Analyst, 1996, 121,1075- 1078 84 Ayebah B., Hung Y.C Electrolyzed water and its corrosiveness on various surface materials commonly found in food processing facilities Journal of Food, 2005, 28, 247-264 85 Deza M.A., Araujo M., Garrido M.J Inactivation of Escherichia coli O157:H7, Salmonella enteritidis, and Listeria monocytogenes on the surfaces of tomatoes by neutral electrolyzed water Lettes in Applied Microbiology, 2003, 37, 482-487 86 Morris J.C Modern chemical methods in water and waste treatment International Course in Sanitary Engineering Vol.1 International Institute for Hydraulic and Environmental Engineering, Delft, The Netherlands 1978 87 Hureiki L., Croue J.P and Legube B Chlorination Studies of Free and Combined Amino Acids Water Research, 1994, 28 (12), 2521-2531 88 Lu S.K and Lederberg J Chloramine Mutagenesis in Bacillus subtilis Science, 1976, 192, 1141-1143 89 Ernest R Blatchley and Woei-Long Gong, Joan B Rose, Debra E Huffman, Masahiro Otaki, John T Lisle Effects of wastewater disinfection on human health Final report Water Environment Research Foundation IWA Publishing 2005 90 William D.E.; Worley S.D.; Wheatley W.B and Swango L J Bactericidal Properties of a New Water Disinfectant Applied & Environmental Microbiology, 1985, 49 (3), 637-643 91 Gowda N.M.M., Trieff N.M and Stanton G.J Kinetics of Inactivation of Adenovirus in Water by Chloramines-T Water Research, 1986, 20, 817- 145 823 92 Elder E.D., Worley S.D and William D.E Bactericidal Properties of an Organic N-Chloramine Formed In Situ The Journal of Applied Bacteriology, 1987, 62, 457-464 93 Swango L.J., Wilt G.R., Killen A.D., William D.E and Worley S.D Inactivation of Legionella pneumophila by Hypochlorite and an Organic Chloramines Applied & Environmental Microbiology, 1987, 53 (12), 2983-2986 94 Nissinen T K., Miettinen I T., Martikainen P J and Vartiainen T Disinfection by-products in Finnish drinking waters Chemosphere, 2002, 48, 9-20 95 Qi Y.; Shang C., Lo I M C Formation of haloacetic acids during monochloramination Water Research, 2004, 38(9), 2374-2382 96 Li-shawang, Hong-yinghu and Chao Wang Effect of Ammonia Nitrogen and Dissolved Organic Matter Fractions on the Genotoxicity of Wastewater Effluent during Chlorine Disinfection Envirinment Science Technology, 2007, 41, 160-165 97 Satyanarayana S.V., Ramamohan R K., Natiq J Pharmaceutical waste Water Treatment using Hydrogen Peroxide Oxidation Method International Journal of Applied Research, 2015, 1(6), 290-293 98 Robert L Jolley Chlorine-Containing Organic Constituents in Chlorinated Effluents Journal Water Pollution Control Federation, 1975, 47, (3), 601-618 99 William A Rutala, David J Weber and the Healthcare Infection Control Practices Advisory Committee (HICPAC) Guideline for Disinfection and Sterilization in Healthcare Facilities Department of Health & Human Services- USA 2008 100 146 , 2009, 47 (5A), 209-216 101 Nguyen Hoai Chau Using electrochemically activated solutions as ecofriendly disinfectants in medicine, agriculture and aquaculture in Vietnam Proceedings of ASEM-5 Symposium on Environment Protection, 2004, 417-424, Hanoi 102 , 2008, 46 (6A), 227-233 103 , 2008, 46 (6A), 89-95 104 , 2008, 46(6a), 89-95 105 , 2010, 48 (2), 97-103 106 , 2010, 48 (2), 47-56 107 , 2008 108 147 , 2010, 48 (4A), 730-735 109 , 2004 110 T -87 1988 111 , 1991, 121-133 112 Pharmaceuticals in the Environment Springer Berlin Heidelberg (ISBN 978-3-540-74663-8), 2008, 3, 3-21 113 Donn J Tons of Released Drugs Taint US Water Associated Press Writers, 2009 114 , 2003 115 Warren C.F Biology and Water Pollution Control W.B Saunders, Philadelphia 1971 116 , 2010, 57-101 117 WHO Medical waste management in developing country 1994 118 , 1993, 95-106 119 Lai J.S and Tsai C.T Study on the properties of wastewater from hospital Journal of the Chinese Environmental Protection Society, 1988, 11, 32-42 148 120 Earle B Phelps The Bacteriological Examination of Water Supplies Journal of the American Chemical Society, 1977, 29 (9), 1377-1379 121 Lewis M J The Bacteriological Examination of drinking Water Supplies Journal of Hygiene, 1983, 90 (2) 143-147 122 WHO Guidelines for Drinking Water Quality 2nd edn Vol.1: Recommendations, Worl Health Organization, 1993, Geneva 123 Lynch J M and Poole N J (eds) Microbial Ecology: A Conceptual Approach Blackwell, Oxford 1979 124 Adams I M., Ayres P A and Wood P C Bacteria reduction during tertiary treatment of sewage enffluents Institute of Public Health Engineers Journal, 1972, 71, 108 - 125 125 IFC environmental guidelines for health care facilities, 2003 126 QCVN 28:2010/BTNMT 127 EPA Wastewater Technology Fact Sheet Chlorine Disinfection United States Environmental Protection Agency EPA 832-F-99-062 1999 128 EPA Water treatment manual: Disinfection-Ozone Environmental Protection Agency, 2011, Ireland 129 Reckhow D., Singer P The removal of organic halide precursors by preozonation and alum coagulation AWWA, 1999, 76, 151-157 130 Suarez S., Juan M., Omil F Pre-treatment of hospital wastewater by coagulation-flocculation and flotation Bioresource Technology, 2009, 100, 2138-2146 131 Franceys R., Pickford J., Reed R A guide to the development of on-site sanitation Geneva, World Health Organization, 1992 132 Dastan S A M., Masoodi H The Use of Ozone in Hospital Wastewater Treatment Science Journal (CSJ), 2015, 36 (6), 1358-1364 149 133 J.N Evaluation of ultraviolet (UV) radiation disinfection technologies for wastewater treatment plant effluent New York State Energy Research and Development Authority, 2004 134 Clement Solomon, Peter Casey, Colleen Mackne, and Andrew Lake Ultraviolet Disinfection 1998 135 Chul-Woo Jung, Hee-Jong Son The relationship between disinfection by-products formation and characteristics of natural organic matter in raw water Korean Journal of Chemical Engineering, 2008, 25 (4), 714720 136 Gunaydin M., Esen S., Karadag A In vitro antimicrobial activity of -oxidized water Annals of Clinical Microbiology and Antimicrobials, 2014, 13-29 137 Oomori T., Oka T., Inuta T., Arata Y The efficiency of disinfection of acidic electrolyzed water in the presence of organic materials Analytical Science, 2000, 16, 365-369 138 , 2015 139 Ignat Ignatov Preparation of electrochemically activated water solutions (catholyte/anolyte) and studying their physical-chemical properties Journal of Medicine, Physiology and Biophysics, 2015, 11, 1-22 140 Jie-Chung Lou, Chien-Er Huang, Jia-Yun Han, Yu-Jen Huang Generation of disinfection by-products (DBPs) at two advanced water treatment plants Environmental Monitoring and Assessment, 2010, 162 (1), 365 375 141 Steve E Hrudey.Chlorination Disinfection By-Products (DBPs) in Drinking Water and Public Health in Canada Minister of National 150 Health and Welfare, 2008 142 Devyatov P S Prevention of hospital infection using electrochemically activated aqueous solution neutral anolyte Electrochemical activation in medicine, Agriculture and Industry, second international symposium, Moscow, 1999, 174-176 143 Kruglov L B Use of the STEL-type devices in Central Military Hospital of the Russian Federal Security Service (FSB) Electrochemical activation in medicine, Agriculture and Industry, Second International Sytmposium, Moscow, 1999, 228-229 144 Loshon C.A., Melly E., Stelow P Analysis of the killing of spores of Journal of Applied Microbiology, 2001, 91, 1051-1058 145 Vorobjeva V.N., Vorobjeva L.I and Khodjaev E.Y The bactericidal effects of electrolysed oxidizing water on bacterial strains involved in hospital infections Artificial Organs, 2004, 28 (6), 590-592 146 Kraft M Electrochemical Water Disinfection: A Short Review Platinum Metals Review, 2008, 52(3), 177-185 147 Samoilenko N., Yermakovych I Hospitals sewage treatment by method of electrochemical oxidation 2015, 1, 183-186 ... ClO2, O3 1.6) [19] 21 P A> P C MB-11 supowa [21] A> PC + mg/L 2-x -Ru-Sb, Ir-Ru- 22 - oxy oxy oxy o [26] oxy o oxy 23 1.1.2.2 30-Eco-C 150g/L) FEM- 8) + -30-ECO-C o 24 o anolit o - a 25 NaCl 10-20... - , PGS.TSKH - m C Nam) , , ANK (Activated Neutral Anolyte) BOD (Biochemical oxygen Demand): N COD (ch oxy DNA (deoxyribonucleic acid): axit nucleic EPA ( FEM (flow-through electrolytic module... mg/L) ~300 ~500 > 800 > 800 pH 6,5 6,5 S 3V) - - An a, b, -3 (a) (b) [21] , 13 -11 [21] - - BT1-00 oxy 2-x Ru-Sb, Ir-Ru-T b V -11 [24] 14 [25] 1.1.1.3 o cao c o , 1O2, H2O2, O22-, HO2 , HO , ClO-

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