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Enzymatic processes to unlock the lignin value

机译:酶促过程释放木质素价值

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Main hurdles of lignin valorization are its diverse chemical composition, recalcitrance, and poor solubility due to high molecular weight and branched structure. Controlled fragmentation of lignin could lead to its use in higher value products such as binders, coatings, fillers etc. Oxidative enzymes, (i.e. laccases and peroxidases) have long been proposed as a potentially promising tool in lignin depolymerization. However, their application was limited to ambient pH, where lignin is poorly soluble in water. A Finnish biotechnology company, MetGen Oy, that designs and supplies industrial enzymes, has developed and brought to market several lignin oxidizing enzymes, including an extremely alkaline lignin oxidase MetZyme? LIGNO?, a genetically engineered laccase of bacterial origin. This enzyme can function at pH values as high as ten to eleven and at elevated temperatures, addressing lignin at its soluble state. In this article, main characteristics of this enzyme as well as its action on bulk lignin coming from an industrial process are demonstrated. Lignin modification by MetZyme? LIGNO? was characterized by size exclusion chromatography, UV-spectroscopy and dynamic light scattering for monitoring particle size of solubilized lignin. Under highly alkaline conditions, laccase treatment not only decreased molecular weight of lignin, but also increased its solubility in water and altered its dispersion properties. Importantly, organic solvent-free soluble lignin fragmentation allowed for robust industrially relevant membrane separation technologies to be applicable for product fractionation. These enzyme-based solutions open new opportunities for biorefinery lignin valorization thus paving the way for economically viable biorefinery business.
机译:木质素增值的主要障碍是其多样的化学组成,顽固性以及由于高分子量和分支结构而导致的溶解性差。木质素的受控断裂可能导致其在高价值产品中的使用,例如粘合剂,涂料,填料等。氧化酶(即漆酶和过氧化物酶)长期以来一直被认为是木质素解聚中潜在的有前途的工具。但是,它们的应用仅限于环境pH值,在此环境中木质素难溶于水。一家设计和提供工业酶的芬兰生物技术公司MetGen Oy,已经开发了几种木质素氧化酶并将其推向市场,其中包括一种极碱性的木质素氧化酶MetZyme? LIGNO ?,一种细菌来源的基因工程漆酶。该酶可在高达10至11的pH值和升高的温度下发挥作用,从而以其可溶状态处理木质素。在本文中,证明了这种酶的主要特性及其对来自工业过程的木质素的作用。 MetZyme修饰木质素? LIGNO?通过尺寸排阻色谱,紫外光谱和动态光散射来监测溶解的木质素的粒径。在高碱性条件下,漆酶处理不仅降低了木质素的分子量,而且增加了其在水中的溶解度并改变了其分散性能。重要的是,无有机溶剂的可溶性木质素裂解技术可将强大的工业相关膜分离技术应用于产品分离。这些基于酶的解决方案为生物精炼厂木质素的增值开辟了新的机会,从而为经济上可行的生物精炼厂业务铺平了道路。

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