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Bioconversion of lignin and its derivatives into polyhydroxyalkanoates: Challenges and opportunities

机译:木质素的生物转化及其衍生物转化为多羟基烷烃:挑战与机遇

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摘要

Renewable energy resources are considered to be promising for the development of a sustainable circular economy. Among various alternatives, the microbial route for various biofuels production is quite lucrative. Use of cellulose and lignocellulose for methane, H-2, organic acids, ethanol, and cellulase has been explored a lot in the past few decades. The major leftover or a coproduct of these processes belongs to lignin-an aromatic cross-link polymer and one of the most abundant complex compounds on earth. A successful bioconversion route of lignin into high-value products is highly desirable for biorefinery perspective. It requires a complex set of enzymes/catalysts to decompose lignin through depolymerization and oxygen removal leading to its monomers that can be metabolized by engineered organisms to synthesize muconic acids, polyhydroxyalkanoates (PHAs), methane, and other high-value products. This article will focus on the opportunities and challenges in the bioconversion of lignin and its derivatives into PHAs.
机译:可再生能源资源被认为是对可持续循环经济的发展有望。在各种替代方案中,各种生物燃料生产的微生物途径非常有利可图。在过去的几十年里,使用纤维素和木质纤维素用于甲烷,H-2,有机酸,乙醇和纤维素酶。这些方法的主要剩余或副产物属于木质素 - 芳族交联聚合物,以及地球上最丰富的复杂化合物之一。对于生物术的观点,非常需要将木质素成功的木质素生物转化途径成为高价值产物。它需要复杂的酶/催化剂,以通过引入其单体的解聚和氧去除来分解木质素,其单体可以通过工程化生物来代谢,以合成粘液酸,多羟基烷烃(PHA),甲烷和其他高价值产物。本文将侧重于木质素生物转化的机遇和挑战及其衍生物进入普利。

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