徐秋子1,, 张多娇1,, 段娜1,*, 林聪1,, 王志强2,
( 1、中国农业大学水利与土木工程学院,北京 100083; 2、农业部工程建设服务中心,北京 100081; )
摘要: 近年来,资源紧缺、环境污染问题愈发严峻。厌氧发酵是实现废弃物资源化、无害化利用的有效方式。调节剂应用在厌氧发酵过程中,能在一定程度上解决厌氧发酵系统水解速率低、启动期长、生物降解能力差、有机质利用率低、产气慢等问题,因此,受到广泛关注。文章介绍了调节剂的种类和调节效果,并总结分析了国内外厌氧消化调节剂对促进产物分解和提高产气效率的研究现状。
关键词: 厌氧发酵;调节剂;沼气
XU Qiuzi1,, ZHANG Duojiao1,, DUAN Na1,*, LIN Cong1,, WANG Zhiqiang2,
( 1、College of Water Resources & Civil Engineer,China Agricultural Univercity,Beijing 100083; 2、Engineering construction service center of Ministry of Agriculture,Beijing 100081; )
Abstract: In recent years, resource shortage and environmental pollution problems become more and more seriously. Anaerobic fermentation is an effective way for the innocuity treatment and resource utilization of wastes. The additive, used in the anaerobic digestion process, can enhance hydrolysis rate and biodegradation rate, shorten start-up period, as well as improve biogas production. Thus, it has gained widespread attention. In this paper, types of additive and their functions were analyzed. The current research status of additives for promoting waste utilization and improving biogas production was stated.
Keywords: anaerobic digestion;addictive;biogas
作者简介: 徐秋子(1993-),女,硕士研究生,研究方向:农业生物环境与能源工程
通信联系人: 段娜(1983-),女,硕士生导师,副教授,主要研究方向:农业生物环境与能源工程
中国科技论文在线:徐秋子,张多娇,段娜等. 厌氧发酵调节剂研究与进展[EB/OL].北京:中国科技论文在线 [2016-10-31].http://www.paper.edu.cn/releasepaper/content/201610-229.
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