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首页> 外文期刊>Journal of Cleaner Production >Sludge predation by aquatic worms: Physicochemical characteristics of sewage sludge and implications for dewaterability
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Sludge predation by aquatic worms: Physicochemical characteristics of sewage sludge and implications for dewaterability

机译:水生蠕虫的污泥捕食:污水污泥的物理化学特征及脱水性的影响

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Worm predation is an eco-friendly and low energy cost means of sludge reduction that has shown great promise. The worm predation process consists of inoculating specific species of aquatic worms into the sludge system to build a suitable biotope. After predation, the residual sludge needs to be discharged and disposed. This study investigates the potential effects of worm predation on sludge dewatering focusing on the mechanisms, characteristics of sedimentation, filtration and dewatering for the sludge from the predation process. It also describes the changes in extracellular polymeric substance and bound water, and discusses options to improve sludge dewatering. The results suggested that worm predation restrained the viscosity and surface charge of residual sludge and helped prevent sludge bulking. However, sludge filterability deteriorated when predation occurred. The residual sludge experienced a significant reduction in the contents of loosely bound and tightly bound extracellular polymeric substances and a decreased ratio of protein to polysaccharides content during the five days of predation. Extending the sludge retention time of predation to five days contributed to a release of bound water and synergistically improved centrifugal dewatering of the residual sludge with ferric chloride added as conditioner. (C) 2020 Elsevier Ltd. All rights reserved.
机译:蠕虫捕食是一种生态友好且低能量成本的污泥减少手段,这表明了很大的承诺。蠕虫捕食过程包括将特定种类的水生虫物种分成污泥系统,以构建合适的生物镜。在捕食后,需要排出和设置残余污泥。本研究研究了蠕虫捕食对污泥脱水的潜在影响,重点是捕食过程中污泥沉淀,过滤和脱水的沉积机制,特征。它还描述了细胞外聚合物物质和结合水的变化,并讨论了改善污泥脱水的选择。结果表明,蠕虫捕食抑制了残留污泥的粘度和表面电荷,并有助于防止污泥膨胀。然而,当捕食发生时,污泥过滤性恶化。残留污泥在捕食的五天内经历了松散束缚和紧密结合的细胞外聚合物物质的含量和蛋白质与多糖含量的降低的显着降低。将污泥保留时间延伸至五天,有助于释放结合的水,并协同改善与氯化铁作为调理剂加入的残留污泥的离心脱水。 (c)2020 elestvier有限公司保留所有权利。

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