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Biomass yield reduction: Is biochemical manipulation possible without affecting activated sludge process efficiency?

机译:生物量产量的降低:是否可以在不影响活性污泥处理效率的情况下进行生化处理?

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The emphasis for operation of the activated sludge process has switched from the volume of wastewater turnover and effluent quality to minimisation of biomass produced. Attempts including extended aeration, promotion of bacterial predation by higher organisms and increasing process temperature have been successful in lowering yield. These all involve increased operating costs and capital works, whereas the process of chemical uncoupling may be cheaper. After initial chemical screening 2,4 dinitrophenol (2,4 DNP) was continuously dosed in an activated sludge simulation (31 working volume, 5.55h HRT). Effect on process efficiency was monitored by measuring BOD removal and biomass production by MLSS. After 7 weeks of chemical treatment the mean yield coefficient of the treated simulation (Y=0.30) was significantly lower than that of the control (Y=0.42). BOD removal from treated and control samples was comparable and not significantly different. (C) 1998 Published by Elsevier Science Ltd. All rights reserved. [References: 24]
机译:活性污泥工艺的操作重点已从废水周转量和废水质量转向最小化生产的生物质。包括延长通气,由高等生物促进细菌捕食以及提高过程温度在内的尝试已成功地降低了产量。这些都涉及增加的运营成本和基本工程,而化学解偶联的过程可能更便宜。初步化学筛选后,在活性污泥模拟(31工作体积,5.55h HRT)中连续添加2,4二硝基苯酚(2,4 DNP)。通过测量MLSS对BOD的去除和生物量的产生来监测对工艺效率的影响。化学处理7周后,模拟处理的平均产量系数(Y = 0.30)显着低于对照组(Y = 0.42)。从处理过的样品和对照样品中去除BOD相当,并且无显着差异。 (C)1998由Elsevier Science Ltd.出版。保留所有权利。 [参考:24]

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