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Biological conversion of lignin and its derivatives to fuels and chemicals

机译:木质素及其衍生物生物转化为燃料和化学品

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Lignocellulosic biomass, which is one of the most abundant and renewable sources for the production of clean fuels and chemicals, consists mainly of cellulose, hemicellulose and lignin. The conversion of cellulose and hemi-cellulose to value added products has been extensively carried out over the last few decades. However, the direct conversion of lignin, the second most abundant aromatic polymer on earth, is challenging due to its heterogeneity and low reactivity. Most of the lignin produced in the pulp and paper industry is used as a fuel to generate heat and electricity. Recently, the chemical or biological conversion of lignin is considered one of the most promising technologies for the production of high-value products. The biological conversion of lignin has several advantages over the chemical co version route in terms of low operating costs, high specificity, and the absence of harsh operating conditions and hazardous chemicals. The present review summarizes recent studies on biological valorization of lignin to value-added products. Additionally, this review emphasizes the various lignin extraction techniques, catabolic pathways involved, necessary enzymes, and the major challenges of this process.
机译:木质纤维素生物质是生产清洁燃料和化学品的最丰富和可再生的资源之一,主要由纤维素,半纤维素和木质素组成。在过去的几十年中,纤维素和半纤维素向增值产品的转化已经广泛进行。然而,由于木质素的不均一性和低反应性,其在地球上第二多的芳香族聚合物的直接转化具有挑战性。纸浆和造纸工业中生产的大部分木质素均用作产生热和电的燃料。最近,木质素的化学或生物转化被认为是生产高价值产品的最有希望的技术之一。木质素的生物转化相对于化学共版路线而言具有多个优势,因为它具有较低的运行成本,高的特异性以及没有苛刻的运行条件和有害化学物质的优点。本文概述了木质素生物增值成为增值产品的最新研究。此外,本综述着重介绍了各种木质素提取技术,涉及的分解代谢途径,必需的酶以及该过程的主要挑战。

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