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Enhancement of waste activated sludge dewaterability using calcium peroxide pre-oxidation and chemical re-flocculation

机译:使用过氧化钙预氧化和化学重絮凝增强废物活性污泥的脱水能力

摘要

The effects of combined calcium peroxide (CaO2) oxidation with chemical re-flocculation on dewatering performance and physicochemical properties of waste activated sludge was investigated in this study. The evolutions of extracellular polymeric substances (EPS) distribution, composition and morphological properties were analyzed to unravel the sludge conditioning mechanism. It was found that sludge filtration performance was enhanced by calcium peroxide oxidation with the optimal dosage of 20 mg/gTSS. However, this enhancement was not observed at lower dosages due to the absence of oxidation and the performance deteriorated at higher dosages because of the release of excess EPS, mainly as protein like substances. The variation in soluble EPS (SEPS) component can be fitted well with pseudo-zero-order kinetic model under CaO2 treatment. At the same time, extractable EPS content (SEPS and loosely bound EPS (LB-EPS)) were dramatically increased, indicating sludge flocs were effectively broken and their structure became looser after CaO2 addition. The sludge floc structure was reconstructed and sludge dewaterability was significantly enhanced using chemical re-flocculation (polyaluminium chloride (PACT), ferric iron (FeCl3) and polyacrylamide (PAM)). The inorganic coagulants performed better in improving sludge filtration dewatering performance and reducing cake moisture content than organic polymer, since they could act as skeleton builders and decrease the sludge compressibility. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本研究研究了过氧化钙(CaO2)氧化与化学絮凝相结合对废活性污泥的脱水性能和理化特性的影响。分析了细胞外聚合物(EPS)分布,组成和形态特性的演变,以阐明污泥的调节机理。发现过氧化钙氧化可提高污泥过滤性能,最佳剂量为20 mg / gTSS。然而,由于不存在氧化作用,因此在较低剂量下未观察到这种增强,而在较高剂量下由于释放出过量的EPS(主要是蛋白质样物质)而使性能下降。在CaO2处理下,可溶性EPS(SEPS)组分的变化可以很好地拟合伪零级动力学模型。同时,可提取的EPS含量(SEPS和松散结合的EPS(LB-EPS))显着增加,表明污泥絮凝物被有效破碎,加入CaO2后其结构变得更松散。污泥的絮凝结构得以重建,污泥的脱水性通过化学絮凝(聚氯化铝(PACT),三价铁(FeCl3)和聚丙烯酰胺(PAM))显着提高。与有机聚合物相比,无机混凝剂在改善污泥过滤脱水性能和减少滤饼含水量方面表现更好,因为它们可以充当骨架助剂并降低污泥的可压缩性。 (C)2016 Elsevier Ltd.保留所有权利。

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