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Enhanced hydrolysis of waste activated sludge for methane production via anaerobic digestion under N_2-nanobubble water addition

机译:在添加N_2-纳米气泡的水中通过厌氧消化增强了废活性污泥的水解以生产甲烷

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Anaerobic digestion (AD) is a relatively safe and economically feasible disposal technique for waste activated sludge (WAS), in which hydrolysis of complex organic matters is the rate-limiting step. The aim of this study is to explore the efficiency of applying nitrogen gas nanobubble water (N-2-NBW) to AD of WAS and reveal the possible mechanisms. The possible effects of N-2-NBW on different processes during AD of WAS were investigated and N-2-NBW was expected to enhance the hydrolysis step. Results showed that after N-2-NBW addition, sludge particles possessed more negative charges (indicated by zeta potential) than the control with deionized water (DW)addition.The total methane production of NBW group was 402 mL/g-VSreduced, 29% higher than the control group. Moreover, mechanism investigations revealed that N-2-NBW addition not only improved the disintegration of high molecular weight compounds (proteins and polysaccharides), but also enhanced the activities of four extracellular hydrolases by 14-17%. Results from the present work showed that the enhancement of N-2-NBW addition on methane production from AD of WAS was mainly through the augmentation of hydrolysis of WAS, as little effect on methanogenesis and VS reduction was discerned. The promotion effect of N-2-NBW hydrolysis suggests that N-2-NBW addition is a promising pretreatment strategy for AD of WAS with no chemical addition at low energy consumption, thus, increasing the economic feasibility of WAS disposal. (C) 2019 Elsevier B.V. All rights reserved.
机译:厌氧消化(AD)是一种相对安全且经济可行的废物活性污泥(WAS)处理技术,其中复杂有机物的水解是限速步骤。这项研究的目的是探讨将氮气纳米气泡水(N-2-NBW)应用于WAS AD的效率,并揭示可能的机理。研究了N-2-NBW对WAS AD中不同过程的可能影响,并预期N-2-NBW会增强水解步骤。结果表明,加入N-2-NBW后,污泥颗粒具有比添加去离子水(DW)的对照更大的负电荷(以zeta电位表示).NBW组的甲烷总产量降低了402 mL / g-VS,29比对照组高%。而且,机理研究表明,N-2-NBW的加入不仅改善了高分子量化合物(蛋白质和多糖)的分解,而且使四种细胞外水解酶的活性提高了14-17%。目前工作的结果表明,N-2-NBW的添加对WAS AD甲烷产量的提高主要是通过增加WAS的水解,而对甲烷生成和VS降低的影响很小。 N-2-NBW水解的促进作用表明,添加N-2-NBW是WAS AD的一种有前途的预处理策略,在低能耗下无需化学添加,因此增加了WAS处置的经济可行性。 (C)2019 Elsevier B.V.保留所有权利。

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