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Seaweed Bioethanol Production: A Process Selection Review on Hydrolysis and Fermentation

机译:海藻生物乙醇生产:水解和发酵的工艺选择审查。

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The rapid depletion and environmental concerns associated with the use of fossil fuels has led to extensive development of biofuels such as bioethanol from seaweeds. The long-term prospect of seaweed bioethanol production however, depends on the selection of processes in the hydrolysis and fermentation stages due to their limiting effect on ethanol yield. This review explored the factors influencing the hydrolysis and fermentation stages of seaweed bioethanol production with emphasis on process efficiency and sustainable application. Seaweed carbohydrate contents which are most critical for ethanol production substrate selection were 52 ± 6%, 55 ± 12% and 57 ± 13% for green, brown and red seaweeds, respectively. Inhibitor formation and polysaccharide selectivity were found to be the major bottlenecks influencing the efficiency of dilute acid and enzymatic hydrolysis, respectively. Current enzyme preparations used, were developed for starch-based and lignocellulosic biomass but not seaweeds, which differs in polysaccharide composition and structure. Also, the identification of fermenting organisms capable of converting the heterogeneous monomeric sugars in seaweeds is the major factor limiting ethanol yield during the fermentation stage and not the SHF or SSF pathway selection. This has resulted in variations in bioethanol yields, ranging from 0.04 g/g DM to 0.43 g/g DM.
机译:与化石燃料的使用相关的快速消耗和环境问题导致了生物燃料的广泛开发,例如海藻中的生物乙醇。然而,海藻生物乙醇生产的长期前景取决于水解和发酵阶段中工艺的选择,因为它们对乙醇产量的限制作用。这篇综述探讨了影响海藻生物乙醇生产的水解和发酵阶段的因素,重点是工艺效率和可持续应用。对于乙醇生产底物选择最关键的海藻碳水化合物含量,绿色,棕色和红色海藻分别为52±6%,55±12%和57±13%。发现抑制剂的形成和多糖的选择性分别是影响稀酸和酶水解效率的主要瓶颈。目前使用的酶制剂是针对淀粉基和木质纤维素生物质而不是海藻开发的,海藻的多糖组成和结构不同。同样,鉴定能够在海藻中转化异质单体糖的发酵生物是限制发酵阶段乙醇产量的主要因素,而不是SHF或SSF途径选择。这导致生物乙醇产量的变化,范围从0.04 g / g DM到0.43 g / g DM。

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