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首页> 外文期刊>Journal of Environmental Engineering >Effect of nonsteady state H2O2 tests on oxygen transfer rate in enhanced biological phosphorus removal process
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Effect of nonsteady state H2O2 tests on oxygen transfer rate in enhanced biological phosphorus removal process

机译:非稳态H2O2测试对增强生物除磷过程中氧气传输速率的影响

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A laboratory scale enhanced biological phosphorus removal process was operated in the University of Cape Town configuration to study the variations in alpha and oxygen transfer efficiency (OTEf) under different process conditions. As part of this investigation, process oxygen transfer parameters were determined using the steady state oxygen uptake rate (OUR) and the nonsteady state hydrogen peroxide addition (HPA) methods, as per the American Society of Civil Engineers guidelines. The results indicated that the oxygen transfer parameters [volumetric mass transfer coefficient (K(L)a(f)), oxygen transfer rate (OTRf), alpha and OTEf)] were higher when both methods were applied on the same day, compared to the subsequent period, when only the steady state OUR method was employed, under similar operating conditions. The difference in the oxygen transfer parameters appears to be due to the addition of H2O2 that generates reactive oxygen species in the nonsteady state HPA test. Based on the findings, it was concluded that the HPA test was not a suitable technique to measure oxygen transfer under process conditions. Further, a conceptual model hypothesizing the impacts of H2O2 addition on activated sludge process is presented.
机译:开普敦大学配置了实验室规模的增强型生物除磷工艺,以研究不同工艺条件下α和氧的传输效率(OTEf)的变化。作为这项研究的一部分,根据美国土木工程师学会的指南,使用稳态氧气吸收率(OUR)和非稳态过氧化氢添加(HPA)方法确定过程中的氧气转移参数。结果表明,与两种方法同时使用时,氧传递参数[体积传质系数(K(L)a(f)),氧传递速率(OTRf),α和OTEf)较高。随后的时间,在类似的工作条件下,仅采用稳态OUR方法。氧气转移参数的差异似乎是由于添加了H2O2,在非稳态HPA测试中会生成活性氧。基于这些发现,可以得出结论,HPA测试不是测量工艺条件下氧气转移的合适技术。此外,提出了一种概念模型,该模型假设了过氧化氢的添加对活性污泥工艺的影响。

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