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Overview of Fenton pre-treatment of sludge aiming to enhance anaerobic digestion

机译:Fenton污泥预处理技术概述,旨在增强厌氧消化

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摘要

Availability of the biodegradable matter in wastewater sludge limits the anaerobic digestion (AD) process efficiency. Therefore, sludge pre-treatment is required to increase sludge solid degradability and, in turn, AD efficiency. Advanced oxidation processes, particularly Fenton pre-treatment, are emerging as popular methods aiming to enhance sludge biodegradability. This review summarizes the major findings of Fenton pre-treatment application in sludge disintegration and dewaterability, and elucidates the impacts on both mesophilic and thermophilic digestion. Efforts are made to understand the effect of the Fenton pre-treatment of wastewater sludge on enhancing AD efficiency (increased biogas production and solids reduction) and outline the future research direction. A case study of mass-energy balance and greenhouse gas (GHG) emission computations for mesophilic and thermophilic digestion of control (without pre-treatment) and Fenton pre-treatment sludge at different sludge retention times is also illustrated.
机译:废水污泥中可生物降解物质的可利用性限制了厌氧消化(AD)工艺的效率。因此,需要进行污泥预处理以提高污泥固体降解能力,进而提高AD效率。先进的氧化工艺,特别是Fenton预处理,正在成为旨在提高污泥生物降解能力的流行方法。这篇综述总结了芬顿预处理在污泥分解和脱水中的主要发现,并阐明了对中温消化和嗜热消化的影响。努力了解芬顿预处理废水污泥对提高AD效率(增加沼气产量和减少固体含量)的影响,并概述未来的研究方向。还说明了一个质能平衡和温室气体(GHG)排放量计算的案例研究,该计算用于在不同污泥保留时间对对照(未经预处理)和Fenton预处理污泥进行中温和高温消化。

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