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Advanced sludge treatment affects extracellular polymeric substances to improve activated sludge dewatering

机译:先进的污泥处理影响细胞外聚合物,以改善活性污泥的脱水

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摘要

The management of wastewater sludge, now often referred to as biosolids, accounts for a major portion of the cost of the wastewater treatment process and represents significant technical challenges. In many wastewater treatment facilities, the bottleneck of the sludge handling system is the dewatering operation. Advanced sludge treatment (AST) processes have been developed in order to improve sludge dewatering and to facilitate handling and ultimate disposal. The authors have extensively reported lab-scale, semi-pilot and pilot investigations on either thermal and thermochemical processes, or chemical oxidation using hydrogen peroxide. To understand the action of these advanced sludge technologies, the essential role played by extracellular polymeric substances (EPS) needs to be understood. EPS form a highly hydrated biofilm matrix, in which the micro-organisms are embedded. Hence they are of considerable importance in the removal of pollutants from wastewater, in bioflocculation, in settling and in dewatering of activated sludge. The present paper reviews the characteristics of EPS and the influence of thermochemical and oxidation mechanisms on degradation and flocculation of EPS. Experimental investigations on waste activated sludge are conducted by the authors to evaluate the various literature findings. From the experiments, it is concluded that AST methods enhance cake dewaterability in two ways: (ⅰ) they degrade EPS proteins and polysaccharides reducing the EPS water retention properties; and (ⅱ) they promote flocculation which reduces the amount of fine floes.
机译:废水污泥的管理,现在通常称为生物固体,占废水处理过程成本的主要部分,并且代表着重大的技术挑战。在许多废水处理设施中,污泥处理系统的瓶颈是脱水操作。已经开发了先进的污泥处理(AST)工艺,以改善污泥脱水并促进处理和最终处置。作者已经广泛报道了对热和热化学过程或使用过氧化氢进行化学氧化的实验室规模,半中试和中试研究。要了解这些高级污泥技术的作用,需要了解细胞外聚合物(EPS)发挥的基本作用。 EPS形成高度水合的生物膜基质,其中嵌入了微生物。因此,它们在去除废水中的污染物,生物絮凝,沉降和活性污泥脱水方面具有重要意义。本文综述了EPS的特性以及热化学和氧化机理对EPS降解和絮凝的影响。作者对废物活性污泥进行了实验研究,以评估各种文献发现。从实验中可以得出结论,AST方法以两种方式增强滤饼的脱水性:(ⅰ)它们降解EPS蛋白和多糖,降低EPS的保水性。 (ⅱ)它们促进絮凝,减少了细絮凝物的数量。

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