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Rheology evolution of high solids content and highly viscous lignocellulose system in biorefinery fermentations for production of biofuels and biochemicals

机译:高固体含量和高粘度木质纤维素系统在生物精炼发酵中生产生物燃料和生物化学品的流变学演变

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摘要

Rheological property of high solids content and highly viscous slurries of lignocellulose biomass in biorefinery fermentations is crucially important for designing large scale reactors. Rheology studies on pre-processing, pretreatment and enzymatic hydrolysis of high solids content lignocellulose biomass have been experimentally investigated and applied to reactor designs of the corresponding steps. Fermentation is the final step to complete the gap of the overall chart of rheology models of lignocellulose biorefinery process. This study experimentally measured rheology behaviors of biorefinery fermentations in three typical forms for biofuel and biochemical production under high solids content and highly viscous slurries. The advanced dry biorefining technology was adopted and excellent fermentation behaviors were achieved using corn stover as material, in which the yield of cellulosic ethanol, L-lactic acid, gluconic and xylonic acids reached up to 81.6, 96.0, 101.5 g/L and 34.4 g/L, respectively. Rheology results found that product generation and simultaneous hydrolysis conversion both played a key role in rheology evolution of fermentation processes. This rheology study provided a crucial basis for large scale bioreactor design in industrial lignocellulose biorefinery operations under high solids loading.
机译:在生物精炼发酵中,高固体含量和木质纤维素生物质的高粘度浆料的流变特性对于设计大型反应器至关重要。高固含量木质纤维素生物质的预处理,预处理和酶水解的流变学研究已通过实验研究,并应用于相应步骤的反应器设计中。发酵是完成木质纤维素生物炼制过程流变学模型总体图空白的最后一步。这项研究以高固体含量和高黏度淤浆的三种典型形式,以生物燃料和生化生产的三种典型形式,对生物炼制厂发酵的流变行为进行了实验测量。采用先进的干法生物精制技术,以玉米秸秆为原料,具有优异的发酵性能,纤维素乙醇,L-乳酸,葡萄糖酸和木糖醛酸的产量分别达到81.6、96.0、101.5 g / L和34.4 g / L。流变学结果发现产物的产生和同时的水解转化都在发酵过程的流变学发展中起关键作用。这项流变学研究为工业化木质纤维素生物炼制厂在高固体含量下的大规模生物反应器设计提供了至关重要的基础。

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