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Bioengineering for utilisation and bioconversion of straw biomass into bio-products

机译:秸秆生物质利用和生物转化为生物产品的生物工程

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This paper focuses on straw biomass and its main composition with the emphasis on the concept of bioengineering where agricultural biotechnology is discussed with references to success and limitations,for the bioconversion of straw biomass to value added bio-products, mainly bio-energy and bio-composite. Biological pre-treatments on straw biomass have been reviewed where the function of biological enzymes and fungi have been discussed in details. Biological pre-treatments have been linked with fungi capable of generating enzymes that biodegrade lignin, hemicellulose and polyphenols. Lignocellulolytic enzymes are considered as prospective biomass degraders for industrial applications, although lignin which is the most recalcitrant constituent of straw biomass, links to hemicellulos and cellulose, thus turns into a barrier for enzymes and stops the infiltration of enzymes to biomass structure. White-rot fungi are identified to be responsible for effective lignin biodegradation in straw biomass decay procedures. It was found that biological pre-treatment in combination with mild chemical and or physical pre-treatments are the most critical process for the success of bioengineering. Bioconversion of biomass to bio-products e.g. bioethanol, biogas and bio-composites has achieved some success, however, several limitations such as long incubation times remain to be solved. The summarised information presented in this paper shall serve as scientific insights and directive fundamentals for researchers and industries for further developments and investments in biotechnology of straw biomass. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文着重于秸秆生物量及其主要组成部分,重点是生物工程学的概念,其中讨论了农业生物技术的成功与局限性,目的是将秸秆生物量从生物转化为增值生物产品,主要是生物能源和生物燃料。综合。综述了秸秆生物量的生物预处理,其中详细讨论了生物酶和真菌的功能。生物预处理已与能够产生可降解木质素,半纤维素和多酚的酶的真菌联系在一起。木质纤维素分解酶被认为是工业应用中潜在的生物质降解剂,尽管木质素是秸秆生物质中最难降解的成分,与半纤维素和纤维素连接,从而成为酶的屏障,并阻止了酶向生物质结构的渗透。白腐真菌被鉴定为在秸秆生物质腐烂程序中有效木质素生物降解的原因。已经发现,将生物预处理与温和的化学和/或物理预处理相结合是生物工程成功的最关键过程。生物质向生物产品的生物转化,例如生物乙醇,沼气和生物复合物已经取得了一些成功,但是,诸如长孵育时间等一些限制仍然有待解决。本文中提供的摘要信息将为研究人员和行业进一步发展和投资秸秆生物质的生物技术提供科学见识和指导基础。 (C)2015 Elsevier B.V.保留所有权利。

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