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Minimization of excess sludge production for biological wastewater treatment

机译:最大限度地减少用于生物废水处理的剩余污泥产量

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Excess sludge treatment and disposal currently represents a rising challenge for wastewater treatment plants (WWTPs) due to economic, environmental and regulation factors. There is therefore considerable impetus to explore and develop strategies and technologies for reducing excess sludge production in biological wastewater treatment processes. This paper reviews current strategies for reducing sludge production based on these mechanisms: lysis-cryptic growth, uncoupling metabolism, maintenance metabolism, and predation on bacteria. The strategies for sludge reduction should be evaluated and chosen for practical application using costs analysis and assessment of environmental impact. High costs still limit technologies of sludge ozonation-cryptic growth and membrane bioreactor from spreading application in full-scale WWTPs. Bioacclimation and harmful to environment are major bottlenecks for chemical uncoupler in practical application. Sludge reduction induced by oligochaetes may present a cost-effective way for WWTPs if unstable worm growth is solved. Employing any strategy for reducing sludge production may have an impact on microbial community in biological wastewater treatment processes. This impact may influence the sludge characteristics and the quality of effluent.
机译:由于经济,环境和法规因素的原因,过量的污泥处理和处置目前对废水处理厂(WWTP)构成了日益严峻的挑战。因此,有很大的动力去探索和开发减少生物废水处理过程中过量污泥产生的策略和技术。本文基于以下机制回顾了减少污泥产生的当前策略:裂解-秘密生长,解偶联代谢,维持代谢和捕食细菌。应通过成本分析和环境影响评估来评估和选择减少污泥的策略,以供实际应用。高昂的成本仍然限制了污泥臭氧化-秘密生长和膜生物反应器技术在大规模污水处理厂中的广泛应用。在实际应用中,生物适应和对环境有害是化学解偶联剂的主要瓶颈。如果解决了不稳定的蠕虫生长问题,则由寡毛虫引起的污泥减少可能是污水处理厂的一种经济有效的方式。采用任何减少污泥产生的策略都可能会对生物废水处理过程中的微生物群落产生影响。这种影响可能会影响污泥的特性和废水的质量。

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