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Enzyme immobilization as a strategy towards efficient and sustainable lignocellulosic biomass conversion into chemicals and biofuels: current status and perspectives

机译:酶固定为有效且可持续的木质纤维素生物量转化为化学物质和生物燃料的策略:当前状态和观点

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Environmental issues have led to the urgent necessity of research to focus on fossil fuel dependency detachment in the near future. Under the biorefinery concept, enzymatic hydrolysis is a key bioprocess for lignocellulosic biomass conversion into biofuels and bioproducts. Even though taking place under milder conditions and without the use of hazardous chemicals compared, for example, with acid hydrolysis, the use of enzymes significantly increases the cost of the process. In this sense, enzyme immobilization has emerged as an important strategy to reduce enzyme costs as it often enhances enzyme stability, while also allowing an easy recovery and reuse. This review discusses the advantages and limitations of hydrolytic lignocellulosic enzyme immobilization, with special focus on the hydrolysis of different lignocellulosic biomasses. Enzyme immobilization is a very well-studied topic, however, there is a lack of studies on the enzymatic hydrolysis of real LCM substrates and the enzyme-substrate (biomass) interactions, thus limiting the knowledge transition for the implementation of this strategy within the context of second generation biorefineries. As such, this state-of the-art compiles recent studies reporting the use of immobilized lignocellulosic enzymes and contributes to shed light on the main knowledge gaps and specific hurdles of these processes, in order to be able to take full advantage of the benefits of enzyme immobilization and boost the feasibility and attractiveness of biorefineries.
机译:环境问题导致迫切需要研究将重点放在不久的将来。在生物融资概念下,酶促水解是木质纤维素生物量转化为生物燃料和生物生物生物生物生物生物生物生物的关键生物处理。即使在温和的条件下进行,并且没有使用危险化学物质,例如,与酸水解相比,使用酶的使用显着增加了该过程的成本。从这个意义上讲,酶固定已成为降低酶成本的重要策略,因为它通常会增强酶稳定性,同时又可以轻松恢复和重复使用。这篇综述讨论了水解木质纤维素酶固定的优势和局限性,特别关注不同木质纤维素生物量的水解。但是,酶固定是一个非常充分的话题,但是,缺乏对真实LCM底物的酶水解和酶 - 底物(Biomass)相互作用的研究,从而限制了在上下文中实施此策略的知识过渡第二代生物工会。因此,这种最新的汇编汇编的最新研究报告了使用固定的木质纤维素酶的使用,并有助于阐明这些过程的主要知识差距和特定障碍,以便能够充分利用酶固定并提高生物精制的可行性和吸引力。

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