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提高城市脱水污泥二次深度脱水性能的关键因素:多糖的选择性氧化分解。

Key factor on improving secondary advanced dewatering performance of municipal dewatered sludge: Selective oxidative decomposition of polysaccharides.

机构信息

College of Environment, Hohai University, Nanjing, 210098, China.

College of Environment, Hohai University, Nanjing, 210098, China.

出版信息

Chemosphere. 2020 Jun;249:126108. doi: 10.1016/j.chemosphere.2020.126108. Epub 2020 Feb 5.

Abstract

Advanced dewatering technologies with moisture content from nearly 80% to below 60% have attracted widespread attention in the field of municipal dewatered sludge disposal. The usage of the correct types of oxidants and the degradation of key component on the effect of secondary advanced dewatering performance is a rising focus. In this study, three types of typical oxidants (Fenton's reagent, HO, and KMnO) were used to pre-treat dewatered sludge directly, then advanced dewatering performance, conversion rate of bio-bound water and decomposition trend of various organic biomass were analysed. Results showed that final moisture content of Fenton's reagent group reduced to below 50% with exposure to the compression of 1000 kPa for 30 min. Different oxidants that were characterized by selective oxidizability and, compared with other oxidants, mainly decomposed proteins, lipids and humic substances, the key component of polysaccharides, which may combine with the most water were primarily decomposed by Fenton's reagent. This promoted the conversion from bio-bound water to free water and advanced dewatering performance significantly. From a morphological perspective, the ratio of dissolved polysaccharides from three layers showed Pellets: tightly bound EPS (T-EPS): loosely bound EPS (L-EPS) = 52.28%-66.56%: 8.37%-12.75%: 23.15%-39.08%, and due to the cell-breaking capacity, Fenton's reagent could mainly promote the release of intracellular polysaccharides-bound water.

摘要

先进的脱水技术可将含水量从近 80%降低至 60%以下,在城市脱水污泥处理领域引起了广泛关注。正确选择氧化剂类型和降解关键组分对二次先进脱水性能的影响成为研究热点。本研究采用三种典型氧化剂(Fenton 试剂、HO 和 KMnO)直接预处理脱水污泥,分析先进脱水性能、生物结合水转化率和各种有机生物质的分解趋势。结果表明,Fenton 试剂组在 1000kPa 压缩 30min 后,最终水分含量降至 50%以下。不同氧化剂具有选择性氧化能力,与其他氧化剂相比,主要分解蛋白质、脂质和腐殖质,而多糖的关键组分则可能与最多的水结合,主要由 Fenton 试剂分解。这显著促进了从生物结合水到自由水的转化和先进的脱水性能。从形态学角度来看,三层中溶解多糖的比例为 Pellets:紧密结合型 EPS(T-EPS):松散结合型 EPS(L-EPS)=52.28%-66.56%:8.37%-12.75%:23.15%-39.08%,由于细胞破碎能力,Fenton 试剂主要促进细胞内多糖结合水的释放。

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