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高有机负荷活性污泥工艺中完全固体滞留下的净生物质生产。

Net biomass production under complete solids retention in high organic load activated sludge process.

机构信息

Laboratory of Environmental Chemistry and Wastewater Treatment, Department of Environmental Engineering and Pollution Control, Technological Education Institution of Western Macedonia, Greece.

出版信息

Bioresour Technol. 2015 Apr;182:193-199. doi: 10.1016/j.biortech.2015.01.119. Epub 2015 Feb 7.

Abstract

The effect of complete solids retention on net biomass production, at a slaughterhouse's activated sludge wastewater treatment process, was studied for 425 days. The process reached equilibrium after 150 days. In equilibrium phase, and until the end of the study, relative constant MLVSS to MLSS ratio, low food to microorganisms ratio (F/M), low substrate utilization rate (SUR) and negligible observed sludge yield (Y obs) were measured. Y obs fluctuated between positive and negative values (± 0.03 gVSS gCOD(-1)), tending zero mean values, and leading to the conclusion that zero net sludge growth can be achieved. The high BOD ultimate/COD ratio and the zero sludge accumulation, leads to the conclusion that all fractions of organic matter, including cell debris, are biodegradable. The results were verified by comparing the measured Y obs values and those predicted using a conventional activated sludge model (ASM) and a modified ASM that incorporates the slow hydrolysis concept of the unbiodegradable compounds.

摘要

对屠宰场活性污泥污水处理过程中完全固体保留对净生物质产量的影响进行了 425 天的研究。该过程在 150 天后达到平衡。在平衡阶段,直到研究结束,相对恒定的 MLVSS 与 MLSS 比、低食物与微生物比(F/M)、低基质利用率(SUR)和可忽略的观察到的污泥产率(Yobs)被测量。Yobs 在正负值(±0.03 gVSS gCOD(-1))之间波动,趋向于零平均值,并得出可以实现净污泥零增长的结论。高 BOD 极限/COD 比和零污泥积累,得出所有有机物质(包括细胞残骸)都可生物降解的结论。通过比较使用传统活性污泥模型(ASM)和修改后的 ASM 测量的 Yobs 值和预测值,验证了这一结论,该模型包含了不可生物降解化合物的缓慢水解概念。

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