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水热/臭氧预处理促进餐厨垃圾中典型废弃油脂厌氧发酵产甲烷
引用本文:岳良辰,程军,张海华,袁璐蕴,花俊杰,董海泉,周俊虎. 水热/臭氧预处理促进餐厨垃圾中典型废弃油脂厌氧发酵产甲烷[J]. 环境科学学报, 2021, 41(4): 1449-1457
作者姓名:岳良辰  程军  张海华  袁璐蕴  花俊杰  董海泉  周俊虎
作者单位:浙江大学能源清洁利用国家重点实验室,杭州310027;杭州环境集团有限公司,杭州310022
基金项目:国家重点研发项目(No.2016YFE0117900);浙江省重点研发项目(No.2017C04001)
摘    要:为了缓解餐厨垃圾中大量未降解油脂包覆微生物,对厌氧发酵产生严重抑制的问题,本文采用水热或臭氧预处理有效降解油脂,预处理进行厌氧发酵.扫描电子显微镜和傅里叶变换-红外光谱分析表明,经过水热或臭氧预处理后,厌氧发酵过程油脂降解程度提高.经过臭氧预处理的火锅废油厌氧发酵甲烷产率提升至(854.20±10.28)mL·g-1(...

关 键 词:废弃油脂  甲烷  臭氧预处理  水热预处理  厌氧发酵
收稿时间:2020-06-22
修稿时间:2020-07-23

Promoting anaerobic fermentative methane production by hydrothermal/ozonation pretreatment of typical waste lipids in food waste
YUE Liangchen,CHENG Jun,ZHANG Haihu,YUAN Luyun,HUA Junjie,DONG Haiquan,ZHOU Junhu. Promoting anaerobic fermentative methane production by hydrothermal/ozonation pretreatment of typical waste lipids in food waste[J]. Acta Scientiae Circumstantiae, 2021, 41(4): 1449-1457
Authors:YUE Liangchen  CHENG Jun  ZHANG Haihu  YUAN Luyun  HUA Junjie  DONG Haiquan  ZHOU Junhu
Affiliation:State Key Laboratory of Clean Energy Utilization, Zhejiang University, Hangzhou 310027;Hangzhou Environmental Group Company Limited, Hangzhou 310022
Abstract:In order to alleviate the inhibition to anaerobic digestion by a large number of microorganisms entrapped with lipids in food waste, hydrothermal and ozonation pretreatments were used to promote anaerobic digestion. SEM and FTIR analysis results showed that after hydrothermal or ozonation pretreatment, the lipid degradation in anaerobic digestion process increased, and the lipid entrapment of microorganisms was alleviated. The methane yield of ozone-pretreated hotpot lipid increased to(854.20±10.28) mL·g-1, reaching a peak methane production rate of (122.06±3.46) mL·g-1·d-1 on day 20, which was 4 d shortened and the methane yield increased by 17.4% compared to the untreated group. The energy conversion efficiency increased from 64.88% to 76.18% after ozonation pretreatment. These indicate that ozonation or hydrothermal pretreatment can promote the degradation of lipids and improve the utilization of substrates by microorganisms to improve the efficiency of anaerobic digestion, thereby alleviating the problem that undegraded lipids entrapment of microorganisms in industrial production.
Keywords:waste lipids  methane  ozonation pretreatment  hydrothermal pretreatment  anaerobic digestion
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