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Trends in bioconversion of lignocellulose: Biofuels, platform chemicals & biorefinery concept

机译:木质纤维素生物转化的趋势:生物燃料,平台化学品和生物精炼概念

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Bioconversion of renewable lignocellulosic biomass to biofuel and value added products are globally gaining significant prominence. Market forces demonstrate a drive towards products benign to natural environment increasing the importance of renewable materials. The development of second generation bioethanol from lignocellulosic biomass serves many advantages from both energy and environmental point of views. Biomass an inexpensive feedstock considered sustainable and renewable, is an option with the potential to replace a wide diversity of fossil based products within the energy sector; heat, power, fuels, materials and chemicals. Lignocellulose is a major structural component of woody and non-woody plants and consists of cellulose, hemicellulose and lignin. The effective utilization of all the three components would play a significant role in the economic viability of cellulosic ethanol. Biomass conversion process involves five major steps, choice of suitable biomass, effective pretreatment, production of saccharolytic enzymes-cellulases and hemicellulases, fermentation of hexoses and pentoses and downstream processing. Within the context of production of fuels from biomass, pretreatment has come to denote processes by which cellulosic biomass is made amenable to the action of hydrolytic enzymes. The limited effectiveness of current enzymatic process on lignocellulose is thought to be due to the relative difficulties in pretreating the feedstocks. The present review is a comprehensive state of the art describing the advancement in recent pretreaments, metabolic engineering approaches with special emphasis on the latest developments in consolidated biomass processing, current global scenario of bioethanol pilot plants and biorefinery concept for the production of biofuels and bioproducts.
机译:可再生木质纤维素生物质向生物燃料和增值产品的生物转化在全球范围内倍受关注。市场力量显示出对产品有益于自然环境的驱动力,从而增加了可再生材料的重要性。从木质纤维素生物质发展第二代生物乙醇从能源和环境的角度来看都有许多优势。生物质是一种廉价的原料,被认为是可持续的和可再生的,是一种选择,有潜力取代能源部门中多种多样的基于化石的产品;热,动力,燃料,材料和化学物质。木质纤维素是木本植物和非木本植物的主要结构成分,由纤维素,半纤维素和木质素组成。所有这三个成分的有效利用将在纤维素乙醇的经济可行性中发挥重要作用。生物质转化过程包括五个主要步骤:选择合适的生物质,有效的预处理,糖解酶,纤维素酶和半纤维素酶的生产,己糖和戊糖的发酵以及下游加工。在由生物质生产燃料的背景下,预处理已经表示了使纤维素生物质适应水解酶作用的过程。认为目前的酶促工艺对木质纤维素的有效性有限是由于预处理原料中的相对困难。本综述是一个全面的技术水平,描述了最近的改进,代谢工程方法,特别强调了整合生物质加工的最新进展,生物乙醇中试工厂的当前全球情况以及生产生物燃料和生物产品的生物精炼概念。

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