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首页> 外文期刊>Quimica nova >CURRENT CHALLENGES ON THE PRODUCTION AND USE OF CELLULOLYTIC ENZYMES IN THE HYDROLYSIS OF LIGNOCELLULOSIC BIOMASS
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CURRENT CHALLENGES ON THE PRODUCTION AND USE OF CELLULOLYTIC ENZYMES IN THE HYDROLYSIS OF LIGNOCELLULOSIC BIOMASS

机译:木质纤维素生物质水解中纤维素酶的生产和使用面临的挑战

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The second generation (2G) ethanol obtained from lignocellulosic biomass has been considered as a potential alternative source of energy for the transportation sector. However, the technologies to convert lignocellulose into fermentable sugars still face several challenges. One of the major challenges of this process is related to the cost of the cellulolytic enzymes. Thus, the development of bioprocesses for enzyme production and strategies to increase the final yield of the enzymatic hydrolysis reactions are required to ensure the economic feasibility of the biomass conversion process. In this review, it is discussed the progress related to fungal enzyme technology over the past few years with major emphasis on the biocatalysts needed for cellulose degradation as well as on cultivation strategies for the production of enzymes on-site. The potential of applying secretome analysis as a tool for the characterization of the enzymatic complexes and some limitations on the use of enzymatic cocktails in the saccharification step, such as the unproductive adsorption of enzymes onto lignin are also discussed in light of the recent literature.
机译:从木质纤维素生物质中获得的第二代(2G)乙醇被认为是运输领域的潜在替代能源。然而,将木质纤维素转化为可发酵糖的技术仍面临若干挑战。该过程的主要挑战之一与纤维素分解酶的成本有关。因此,需要开发用于酶生产的生物方法和增加酶水解反应的最终产率的策略以确保生物质转化方法的经济可行性。在这篇综述中,我们讨论了真菌酶技术在过去几年中的进展,重点是纤维素降解所需的生物催化剂以及现场生产酶的培养策略。根据最近的文献,还讨论了应用分泌蛋白质组分析作为表征酶复合物的工具的潜力以及在糖化步骤中使用酶混合物的限制,例如酶在木质素上的非生产性吸附。

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