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Thermal treatment of sewage sludge: A comparative review of the conversion principle, recovery methods and bioavailability-predicting of phosphorus

污水污泥 焚化 生物固体 废物管理 环境科学 水热碳化 污水污泥处理 强化生物除磷 污水处理 热解 制浆造纸工业 化学 活性污泥 环境工程 碳化 工程类 有机化学 吸附
作者
Ya Zhu,Yunbo Zhai,Shanhong Li,Xiangmin Liu,Bei Wang,Xiaoping Liu,Yuwei Fan,Haoran Shi,Caiting Li,Yun Zhu
出处
期刊:Chemosphere [Elsevier]
卷期号:291: 133053-133053 被引量:117
标识
DOI:10.1016/j.chemosphere.2021.133053
摘要

Phosphorus is a nutrient that is essential to nature and human life and has attracted attention because of its very limited reserves. Dwindling phosphorus reserves and soaring prices have made the recovery of phosphorus from waste biosolids even more urgent. Waste activated sludge, as the final destination of most of the phosphorus in human domestic and industrial water, has been considered as a reliable source of phosphorus recovery. The thermal treatment method of sewage sludge is currently a relatively environmentally friendly disposal method, which mainly includes incineration, pyrolysis and hydrothermal carbonization. This paper reviews the methods for the recovery of different forms of phosphorus (wet chemical, thermochemical and electrodialysis) from solid products obtained from different sludge thermal treatment methods (incinerated sewage sludge ash, pyrolysis of sewage sludge char and hydrochar) and the bioavailability of the recovered phosphorus products. Incineration of sewage sludge is currently the most established and effective method for recovering phosphorus from the thermal treatment products of sewage sludge. One of the wet chemical methods has been applied on a commercial scale and is expected to be further developed for future industrial applications. Pyrolysis and hydrothermal carbonation still have many research gaps in this field. Based on their principles and laboratory performance, both of them have the potential to recover phosphorus and should be further explored.
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