首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Kinetics and Rheological Behavior of Higher Solid (Solids 20%) Enzymatic Hydrolysis Reactions Using Dilute Acid Pretreated, Deacetylation and Disk Refined, and Deacetylation and Mechanical Refined (DMR) Corn Stover Slurries
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Kinetics and Rheological Behavior of Higher Solid (Solids 20%) Enzymatic Hydrolysis Reactions Using Dilute Acid Pretreated, Deacetylation and Disk Refined, and Deacetylation and Mechanical Refined (DMR) Corn Stover Slurries

机译:高固体(固体& 20%)酶水解反应的动力学和流变行为使用稀酸预处理,脱乙酰化和圆盘精制,脱乙酰化和机械精制(DMR)玉米秸秆浆液

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摘要

Many potential biochemical pathways producing advanced hydrocarbon fuels from renewable lignocellulosic biomass require hydrolysates with high sugar concentrations and low toxicity, enabling flexible fermentation strategies, such as fed-batch fermentations capable of producing high product titers and production rates during fermentation. High sugar concentrations also increase the osmotic pressure in the hydrolysates, thus helping to decrease contamination issues. We have shown the production of high sugar concentrations directly from biomass without the need for energy/capital intensive concentration, conditioning, and/or purification steps. In our previous work, we successfully demonstrated high biomass derived sugar concentrations (over 230 g/L fermentable sugars) in enzymatic hydrolysis from high solid (20 wt % insoluble solids) digestions of dilute alkali deacetylated and mechanically refined (DMR) corn stover slurries. The goal of this work was to understand the effects of initial solid loadings on differently pretreated corn stover substrates on the rheological property changes of enzymatic-hydrolyzed slurries as well as the rates and yields of the enzymatic hydrolysis reactions. We performed high-solid enzymatic hydrolysis using deacetylated and disk refined (DDR), DMR, and dilute acid pretreated (DAP) corn stover substrates at four different initial total solid loadings, 17, 22, 27, and 32%. Slurry samples were collected at regular intervals for measurements of monomeric and oligomeric sugar concentrations (glucose and xylose), particle size distributions, viscosities, and yield stresses. We produced over 270 g/L of fermentable, monomeric sugars (157 g/L of glucose and 114 g/L of xylose) at 32 wt % total insoluble solid during enzymatic hydrolysis of the DMR substrates. The pumpabilities of the digested, high-solid enzymatic hydrolysates were shown to be comparable to other commercially relevant slurry streams, such as honey, peanut butter, and ketchup from the food industry. The conversion and rheological results indicate that high-solid enzymatic hydrolysis (similar to 33 wt %) of DMR substrates is a promising and scalable technology for producing high sugar concentration slurries from lignocellulosic biomass.
机译:许多潜在的生化途径从可再生的木质纤维素生物量产生高级烃燃料,需要具有高糖浓度和低毒性的水解产物,使得能够柔性发酵策略,例如能够在发酵过程中产生高产物滴度和生产率的喂养批量发酵。高糖浓度也增加了水解产物中的渗透压,从而有助于降低污染问题。我们已经显示出直接从生物质生产的高糖浓度,而无需能量/资本密集浓度,调节和/或纯化步骤。在我们以前的工作中,我们成功地证明了高固体(& 20wt%不溶固体)消化的酶水解中的高生物量衍生的糖浓度(超过230g / l可发酵的糖)稀碱脱乙酰化和机械精制(DMR)玉米秸秆浆液。这项工作的目标是了解初始固体载体对不同预处理玉米秸秆基材的影响,以酶水解浆料的流变性能变化以及酶水解反应的速率和产率。我们在四种不同初始总固体载体,17,22,27和32%的四个不同初始总固体载体中进行高固体酶水解,DMR和稀释酸预处理(DAP)玉米防冻基材。以规则的间隔收集浆料样品,用于测量单体和低聚糖浓度(葡萄糖和木糖),粒度分布,粘度和屈服应力。在DMR底物的酶水解期间,我们在32wt%的总不溶性固体中产生超过270g / l的可发酵,单体糖(157g / L葡萄糖和114g / L的木糖)。消化的高固体酶水解产物的救济性显示出与其他商业相关的浆料流相当,例如蜂蜜,花生酱和食品工业的番茄酱。转化性和流变结果表明,高固体酶水解(类似于33wt%)的DMR底物是一种有效和可扩展的技术,用于生产来自木质纤维素生物质的高糖浓度浆料。

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