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木薯渣微生物降解及再利用研究进展
引用本文:李静,涂佳才,陈秀龙,宋付平,冯朝阳,覃新导. 木薯渣微生物降解及再利用研究进展[J]. 生态环境, 2010, 19(10): 2506-2510
作者姓名:李静  涂佳才  陈秀龙  宋付平  冯朝阳  覃新导
作者单位:[1]中国热带农业科学院广州实验站,广东广州510140 [2]聊城大学,山东聊城252000
基金项目:农业部木薯现代产业技术体系项目
摘    要:木薯渣因其所含粗纤维经有效降解之后可以变废为宝,节省资源又保护环境而受到国内外学者的广泛关注。对木薯渣再利用方面的研究已经成为近年来一大热点,微生物降解是提高木薯渣利用率的一个有效途径。从木薯渣降解再利用角度出发,综述了木薯渣的用途、降解机理以及温度、pH值、含水量等重要影响因素。阐明了在合适的环境条件下,筛选有效降解微生物是提高木薯渣利用率的关键因素。同时展望了调制复合酶系在降解木薯渣纤维素上的应用,以及改造、合成以及重组降解酶以提高和推广木薯渣纤维素分解的必要性。

关 键 词:木薯渣  微生物  纤维素降解  再利用

Advances in reuse and microbiological degradation of cassava residue
LI Jing,TU Jiacai,CHEN Xiulong,SONG Fuping,FENG Chaoyang,QIN Xindao. Advances in reuse and microbiological degradation of cassava residue[J]. Ecology and Environmnet, 2010, 19(10): 2506-2510
Authors:LI Jing  TU Jiacai  CHEN Xiulong  SONG Fuping  FENG Chaoyang  QIN Xindao
Affiliation:1* 1.Chinese Academy of Tropical Agricultural Sciences Guangzhou Experimental Station,Guangzhou 510140,China; 2.Liaocheng University,Liaocheng 252000,China
Abstract:Cassava residue,which brings serious harm to the environment due to its toxicity and stability,however,can be degraded to useful material.So nowadays it is greatly concerned all over the world and the research on reuse of cassava residue has been a hot issue in recent years.Microbial degradation is an effective way to improve its utilization.Focus on the degradation and reuse of cassava residue,the paper mainly summarized the application and degradation mechanism of cassava residue,and also the important environmental factors influencing its microbial degradation.The article elucidates that the screening of effective degradation microorganisms is the key factor that can improve the utilization of cassava residue.The environmental condition brings great influence on the degradation of cassava residue.Finally,the application of modulating compound enzyme to the degradation of cassava residue cellulose,as well as the necessity of transforming,synthesizing,and restructuring degradation enzyme is recommended.
Keywords:cassava residue  microbiology  cellulose degradation  resuse
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