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微生物电解强化废污泥水解液生物转化产氢优于厌氧消化。

Microbial electrolysis enhanced bioconversion of waste sludge lysate for hydrogen production compared with anaerobic digestion.

机构信息

CAS Key Laboratory of Environmental Biotechnology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China; University of Chinese Academy of Sciences, Beijing 100049, China.

CAS Key Laboratory of Environmental Biotechnology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China; School of Civil and Environmental Engineering, Harbin Institute of Technology Shenzhen, Shenzhen 518055, China.

出版信息

Sci Total Environ. 2021 May 1;767:144344. doi: 10.1016/j.scitotenv.2020.144344. Epub 2020 Dec 29.

Abstract

Waste sludge lysate was produced by dehydration after pyrolysis of waste activated sludge. In addition to dominant components such as protein, polysaccharide, and volatile fatty acids (VFAs), it also contained melanoidins, which produced from Maillard reaction. The inclusion of melanoidins will lead to poor biological degradation in conventional anaerobic digestion (AD). While microbial electrolysis cell (MEC) was proved an enhanced degradation of complex organic matter for hydrogen production. The results showed that under high concentration conditions, conventional AD caused the accumulation of propionic acid and slowed down the use of acetic acid, but MEC overcame the defects and increased the chemical oxygen demand (COD) removal efficiency by 40.33%, and achieved average hydrogen production rate (0.15 ± 0.05 L L day), which was 79 times that of AD system (0.0019 ± 0.0009 L L day). Therefore, MEC can enhanced biodegradation of the waste sludge lysate for high hydrogen production.

摘要

污泥裂解液是在废活性污泥热解脱水后产生的。除了蛋白质、多糖和挥发性脂肪酸 (VFAs) 等主要成分外,它还含有美拉德反应产生的类黑素。类黑素的存在会导致传统厌氧消化(AD)中生物降解性较差。而微生物电解池(MEC)已被证明可以增强复杂有机物的降解,从而产生氢气。结果表明,在高浓度条件下,传统 AD 会导致丙酸积累,并减缓乙酸的利用,但 MEC 克服了这些缺陷,使化学需氧量(COD)去除效率提高了 40.33%,并实现了平均产氢率(0.15 ± 0.05 L L day),是 AD 系统的 79 倍(0.0019 ± 0.0009 L L day)。因此,MEC 可以增强废污泥裂解液的生物降解性,从而实现高产氢。

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