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Insight into a new two-step approach of ozonation and chitosan conditioning for sludge deep-dewatering

机译:深入了解臭氧处理和壳聚糖处理的两步式新方法以深度处理污泥

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摘要

Sludge deep-dewatering, capable of reducing water content (Wc) of sludge cake under 60%, is one of the current hot topics in sludge treatment. In this study, a new environmentally friendly two-step approach of ozonation and chitosan (CT) conditioning was proposed and examined to be practicable for sludge deep-dewatering. With 60 mg/gTS ozone and 20 mg/gTS CT conditioning, sludge capillary suction time (CST) and Wc of the dewatered sludge cake decreased from 196.3 s and 84.7% of raw sludge to 15.8 s and 57.5%, respectively. Ozonation treatment could efficiently crack sludge flocs and cells, and release biopolymers, causing the decreases in viscosity, zeta potential and particle size. Subsequently, CT ameliorated the sludge dewaterability successfully by neutralizing negative charges and flocculating colloids to promote the spread of interstitial water. Furthermore, the contents of heavy metals (As, Cd, Cr, Ni, Pb and Zn) in conditioned sludge cake decreased obviously except Cu, but all detected heavy metals contents satisfied the A level of agricultural land (GB4284-2018). For chemical speciation of heavy metals, the proportions of the acid soluble/exchangeable state and the reductive state increased apparently, implying higher toxicity and bioavailability, except Pb. Hence, pretreatments were required to reduce the environmental risk of heavy metals in conditioned sludge cake prior to a further utilization. (C) 2019 Elsevier B.V. All rights reserved.
机译:污泥深度脱水能够将污泥饼的水分含量降低到60%以下,是目前污泥处理的热门话题之一。在这项研究中,提出了一种新的环保的两步臭氧化和壳聚糖(CT)调理方法,并被认为对污泥深度脱水是可行的。在60 mg / gTS臭氧和20 mg / gTS CT条件下,脱水污泥饼的污泥毛细管抽吸时间(CST)和Wc分别从原污泥的196.3 s和84.7%减少到15.8 s和57.5%。臭氧处理可以有效地裂解污泥的絮凝物和细胞,并释放生物聚合物,从而导致粘度,ζ电位和粒径的降低。随后,CT通过中和负电荷和使胶体絮凝以促进间隙水的扩散,成功地改善了污泥的脱水性。此外,除Cu以外,条件污泥饼中重金属(As,Cd,Cr,Ni,Pb和Zn)的含量均显着下降,但所有检测到的重金属含量均满足农田A级标准(GB4284-2018)。对于重金属的化学形态,酸可溶/可交换状态和还原状态的比例明显增加,这意味着除了铅以外,还具有更高的毒性和生物利用度。因此,在进一步利用之前,需要进行预处理以降低条件污泥饼中重金属的环境风险。 (C)2019 Elsevier B.V.保留所有权利。

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