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Enhancement of methane production in mesophilic anaerobic digestion of secondary sewage sludge by advanced thermal hydrolysis pretreatment

机译:先进的热水解预处理提高二级污水污泥的中温厌氧消化中甲烷的产生

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Studies on the development and evolution of anaerobic digestion (AD) pretreatments are nowadays becoming widespread, due to the outstanding benefits that these processes could entail in the management of sewage sludge. Production of sewage sludge in wastewater treatment plants (WWTPs) is becoming an extremely important environmental issue. The work presented in this paper is a continuation of our previous studies with the aim of understanding and developing the advanced thermal hydrolysis (ATH) process. ATH is a novel AD pretreatment based on a thermal hydrolysis (TH) process plus hydrogen peroxide (H2O2) addition that takes advantage of a peroxidation/direct steam injection synergistic effect. The main goal of the present research was to compare the performance of TH and ATH, conducted at a wide range of operating conditions, as pretreatments of mesophilic AD with an emphasis on methane production enhancement as a key parameter and its connection with the sludge solubilization. Results showed that both TH and ATH patently improved methane production in subsequent mesophilic BMP (biochemical methane potential) tests in comparison with BMP control tests (raw secondary sewage sludge). Besides other interesting results and discussions, a promising result was obtained since ATH, operated at temperature (115 degrees C), pretreatment time (5 min) and pressure (1 bar) considerably below those typically used in TH (170 degrees C, 30 min, 8 bar), managed to enhance the methane production in subsequent mesophilic BMP tests [biodegradability factor (f(B)) = cumulative CH4 production/cumulative CH4 production (Control) = 1.51 +/- 0.01] to quite similar levels than conventional TH pretreatment [f(B) = 1.52 +/- 0.03]. (C) 2014 Elsevier Ltd. All rights reserved.
机译:由于厌氧消化(AD)预处理的这些过程在污水污泥管理中具有显着的优势,因此,它们的研究和发展如今已变得越来越普遍。废水处理厂(WWTP)中污水污泥的生产正成为极为重要的环境问题。本文介绍的工作是我们先前研究的继续,目的是理解和开发先进的热水解(ATH)工艺。 ATH是一种基于热水解(TH)工艺加上过氧化氢(H2O2)添加的新型AD预处理,可利用过氧化/直接蒸汽注入的协同效应。本研究的主要目的是比较TH和ATH的性能,在宽范围的操作条件下进行,作为嗜温性AD的预处理,重点是提高甲烷产量作为关键参数及其与污泥溶解的关系。结果表明,与随后的中温BMP(生化甲烷潜力)测试相比,TH和ATH与BMP对照测试(原始二次污水污泥)相比,明显改善了甲烷的产生。除其他有趣的结果和讨论外,自ATH以来,在温度(115摄氏度),预处理时间(5分钟)和压力(1巴)下运行,远低于TH(170摄氏度,30分钟)所获得的结果,因此获得了可喜的结果,8 bar),在随后的中温BMP测试中设法提高了甲烷产量[生物降解因子(f(B))=累积CH4产量/ CH4累积产量(对照)= 1.51 +/- 0.01],其水平与传统TH相当预处理[f(B)= 1.52 +/- 0.03]。 (C)2014 Elsevier Ltd.保留所有权利。

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