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An integrated process for the extraction of fuel and chemicals from marine macroalgal biomass

机译:从海洋大型藻类生物质中提取燃料和化学物质的综合过程

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摘要

We describe an integrated process that can be applied to biomass of the green seaweed, Ulva fasciata, to allow the sequential recovery of four economically important fractions; mineral rich liquid extract (MRLE), lipid, ulvan, and cellulose. The main benefits of our process are: a) its simplicity and b) the consistent yields obtained from the residual biomass after each successive extraction step. For example, dry Ulva biomass yields ~26% of its starting mass as MRLE, ~3% as lipid, ~25% as ulvan, and ~11% as cellulose, with the enzymatic hydrolysis and fermentation of the final cellulose fraction under optimized conditions producing ethanol at a competitive 0.45 g/g reducing sugar. These yields are comparable to those obtained by direct processing of the individual components from primary biomass. We propose that this integration of ethanol production and chemical feedstock recovery from macroalgal biomass could substantially enhance the sustainability of marine biomass use.
机译:我们描述了可以应用于绿色海藻Ulva fasciata生物量的集成工艺,以允许顺序回收四个经济上重要的馏分;富含矿物质的液体提取物(MRLE),脂质,ulvan和纤维素。我们方法的主要优点是:a)简单,b)在每个连续的萃取步骤后,从残留生物质中获得的稳定产量。例如,干燥的Ulva生物质产生的起始质量约为MRLE的26%,脂质约为3%,ulvan约为25%,纤维素约为11%,并在优化的条件下对最终纤维素级分进行酶促水解和发酵生产具有竞争力的0.45微克/克还原糖的乙醇。这些产量与通过直接处理来自初级生物质的单个成分获得的产量相当。我们建议这种乙醇生产和从大型藻类生物质中回收化学原料的整合可以大大提高海洋生物质利用的可持续性。

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