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首页> 外文期刊>Advanced Sustainable Systems >Conversion of Lignocellulosic Biomass to Reducing Sugars in High Pressure and Supercritical Fluids: Greener Alternative for Biorefining of Renewables
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Conversion of Lignocellulosic Biomass to Reducing Sugars in High Pressure and Supercritical Fluids: Greener Alternative for Biorefining of Renewables

机译:木质生物质转化减少糖在高压和超临界流体:更环保的替代Biorefining的可再生能源

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Supercritical fluids offer great potential to be employed in lignocellulosic biomass (LCB) fractionation in biorefinery. Supercritical carbon dioxide and water are greener alternatives compared with conventional reagents and have been investigated for the pretreatment and hydrolysis of lignocellulosic biomass. This review is focused on examining the fundamentals that govern the function of supercritical fluids in the pretreatment stage, as well as in the main hydrolysis reaction. Sub/supercritical carbon dioxide is used in pretreatment and sub/supercritical water has been the solvent of choice in hydrolysis of LCB. Significant research has gone into understanding the effect of process parameters such as temperature, pressure, cosolvent, and use of external catalyst on the sugar yield in biorefining of the LCB in supercritical fluids. It is shown that processes with reduced environmental impact and energy consumption can significantly enhance biorefining of LCB at commercial scale. Enzymatic hydrolysis of LCB in supercritical carbon dioxide is a promising approach that can accommodate mild reaction conditions. Developing an understanding of the performance of enzymes in high pressure systems and designing carriers for enzyme immobilization and further recycling is expected to enable one pot pretreatment and hydrolysis and is an important milestone in processing renewable resources for deriving biofuel and value-added chemicals.
机译:超临界流体提供了巨大的潜力采用木质生物质(LCB)在生物分离。二氧化碳和水是更环保的替代品相比传统的试剂和追究预处理和水解木质生物质。重点检查管理的基础超临界流体的作用预处理阶段,以及在主水解反应。用于预处理和二氧化碳亚/超临界水的溶剂选择在LCB水解。进入理解过程的影响参数如温度、压力、助溶剂,使用外部的催化剂糖产量的LCB biorefining超临界流体。减少环境影响和能源消费可以显著提高biorefiningLCB的商业规模。在超临界二氧化碳是一种LCB有前途的方法,可以容纳温和反应条件。高压的酶的性能系统和设计载体酶固定和进一步回收料使一个罐子预处理和水解是一个重要的里程碑在处理可再生资源获取生物燃料和增值化学物质。

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