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Enhanced technology based for sewage sludge deep dewatering: A critical review

Journal

WATER RESEARCH
Volume 189, Issue -, Pages -

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.watres.2020.116650

Keywords

Sludge dewatering; EPS; Coagulants; ED

Funding

  1. National Natural Science Foundation of China [51678546]

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Sludge is a byproduct of sewage treatment containing pathogens, heavy metals, organic pollutants and other toxic substances. Chemical preconditioning is crucial for improving sludge dewatering efficiency, and different chemical conditioning technologies have a significant impact on the dewatering process. Research and evaluation of various enhanced dewatering technologies are important for improving dewatering efficiency.
Sludge is an inevitable by product of sewage treatment, and it includes pathogens, heavy metals, organic pollutants and other toxic substances. The components of sludge are complex and variable with extracellular polymeric substances (EPS) being one. EPS are highly hydrophilic and compressible, and make sludge dewatering difficult. Therefore, the development of efficient sludge-dewatering technology is an important means of mitigating rapid sludge growth. At present, the main methods used for sludge deep-dewatering technology are chemical preconditioning with high-pressure filtration and electrical mechanical dewatering. The selection of chemical preconditioning directly determines the final efficiency of the sludge-dewatering process. In this paper, we conduct a comprehensive review of the problems related to sludge dewatering and systematically summarise the impact of different chemical conditioning technologies on the efficiency of sludge dewatering. Furthermore, the characteristics of different enhanced dewatering technologies are evaluated and analysed for their adaptability and final disposal methods. We believe that this review can clarify the chemical conditioner mechanism to improve sludge dewatering, provide reference debugging information for the sludge-dewatering process and promote the development of efficient and environmentally friendly sludge-dewatering technology. (C) 2020 Elsevier Ltd. All rights reserved.

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