首页> 外文会议>1988 Spring Conference Entitled Ozonation Systems: Design, Operation and Maintenance April 27 and 28, 1988 Monroe, Michigan >Understanding the effects of ozonation on a combined municipal/industrial secondary effluent
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Understanding the effects of ozonation on a combined municipal/industrial secondary effluent

机译:了解臭氧化对市政/工业二次污水混合处理的影响

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Recent studies have reported the potential for the ozonation process to increase the biodegradability of organic material present in wastewater that has undergone secondary treatment. A variety of parameters have been used to indicate this increase in biodegradability. The most common measure continues to be the five-day carbonaceous biochemical oxygen demand (CBOD_5). Increases in CBOD_5 have been believed to signify increased biodegradability. However, the CBOD_5 test as an indicator of biodegradability is subject to possible shortcomings or misinterpretations. For example, CBOD_5 involves the measurement of oxygen uptake at only one point (five days) aong a curve of oxygen uptake (the CBOD versus time curve) that consists of many points. Therefore, it would seem that a more accurate evaluation of the effects of ozonation on biodegradability might be gained through the study of CBOD exertion over time for ozonated and unozonated treated effluents.
机译:最近的研究报告了臭氧化过程有可能提高经过二级处理的废水中存在的有机材料的生物降解能力。已经使用多种参数来指示生物降解能力的增加。最常见的措施仍然是五天的含碳生化需氧量(CBOD_5)。据信CBOD_5的增加表明生物降解能力的提高。但是,CBOD_5测试作为生物可降解性的指标可能会出现缺陷或误解。例如,CBOD_5涉及在一个由许多点组成的吸氧曲线(CBOD与时间的曲线)中,仅在一个点(五天)测量吸氧量。因此,似乎可以通过研究臭氧化和未臭氧化处理废水随时间的CBOD消耗,获得更准确的臭氧化对生物降解性影响的评估。

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