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008 170399s1992 th u m rtt 0| a1eng d
035 _a.b10380218
099 9 _aAIT Thesis no.EV-92-27
100 1 _aSales, Candelaria L.
245 1 0 _aInvestigation of the combined use of ozone and hydrogen peroxide (peroxone) as disinfectant in Bangkhen water treatment plant
260 _aBangkok :
_bAsian Institute of Technology,
_c1992
300 _a87 p.
490 1 _aThesis ;
_vno. EV-92-27
500 _aA thesis submitted in partial fulfillment of the requirement for the degree of Master of science
502 _aThesis (M.Sc.) - Asian Institute of Technology, 1992
520 _aIn this study, laboratory scale experiments were canied out to investigate the bactericidal effectiveness of ozone-hydrogen peroxide (Peroxone) process and to find out the extent of its oxidation as well. It included the evaluation of the efficiency of the ozonizer used (Model E0- 302) and the investigation of the effects of ozone and Peroxone on trihalomethane (THM) formation. Filtered unchlodnated water from Bangkhen Water Treatment Plant was used as source water. The appHcation of ozone generated at various conditions: low voltage-high flowrate and high voltage-low fowrate with dilution showed different reactivity. Ozone obtained at low voltage high flowrate produced higher ozone residuals and was more effective Jn E. coli inactivation and total organic content removal (TOC). The investigation revealed that the combined process (Peroxone) is more active bactericidal agent compared to that of ozone alone and chlorine. Nearly 99.99 percent km was attained at 0.34 mg/liter of ozone and Hp2 ;o1 ratio of 0.5. It may be less expensive than ozonation because lower ozone dosages are required tci achieve the same level of contaminant oxidation. The addition of H1?2 was found to have increased the ozone residuals. Peroxone application also can increase the THNI removal by ozone to 20- 30 percent. Thus, addition of OH· radicals through H2 o 2 can increase the oxidizing capacity of ozone in the removal of organic materials in the natural water. In contrast, glucose as source of organic matter is not susceptible to the H2 o2 addition. Therefore, findings further showed that Peroxone, aside from its effectiveness in bactericidal inactivation, can also be a good agent for the control of THM formation through maximizing TOC removal.
650 0 _aWater treatment plants
650 0 _aSewage
_xPurification
_xOrganization
700 0 _aSamorn Muttamara,
_eChairperson
700 1 _aMora, J. C.,
_eExamination committee
700 1 _aReutergardh, L.,
_eExamination committee
700 1 _aBoonthanon, S.,
_eExamination committee
710 2 _aCanadian International development Agency (CJDA),
_eScholarship donor
810 2 _aAsian Institute of Technology.
_tThesis ;
_vno. EV-92-27
856 _3Full-Text
_u http://203.159.5.9/ait-thesis/detail.php?q=B16846
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