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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Oxygen Transfer in High Solids Loading and Highly Viscous Lignocellulose Hydrolysates
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Oxygen Transfer in High Solids Loading and Highly Viscous Lignocellulose Hydrolysates

机译:高固体负载和高粘性木质纤维素水解产物的氧气转移

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High product concentration in aerobic biorefining fermentation requires high lignocellulose feedstock loading. However, the high solids content and the consequent high viscosity of the lignocellulose hydrolysate severely limit oxygen transfer and thus lead to low aerobic fermentation rate. This study first investigates the experimental measurement and the computational fluid dynamics (CFD)-based simulation of oxygen transfer properties in the high solids loading and highly viscous lignocellulose hydrolysates. The oxygen mass transfer coefficients kLa values vary with various biorefining processing parameters. A minimum threshold kLa value was required for aerobic fermentation of glucose oxidation into gluconic acid. The rheological properties of the slurry were experimentally determined, and a CFD model was established for the design of aerobic fermentation bioreactors. The kLa values between the CFD calculation and the experimental determination were in good agreement for the high solids loading and highly viscous hydrolysate slurry. The study provided important information and useful tools for achieving efficient aerobic fermentations in high solids loading and highly viscous lignocellulose hydrolysates. The measured kLa value could be applied to general aerobic fermentation using lignocellulose feedstock.]]>
机译:<!图像/中/ SC-2017-02503N_0008.gif“>有氧生物化发酵中的高产品浓度需要高木质纤维素原料装载。然而,高固体含量和随后的木质纤维素水解物的高粘度严重限制氧转移,从而导致低氧发酵速率。本研究首先研究了高固体载荷和高粘性木质纤维素水解产物中的实验测量和基于氧气转移性质的氧转移性能的模拟。氧气传质系数 k k <亚> l 值随各种生物化处理参数而变化。最小阈值 k l a / i>对于葡萄糖氧化到葡萄糖酸中的需氧性发酵所需的值。实验确定浆料的流变性质,建立了CFD模型,用于设计有氧发酵生物反应器。 CFD计算和实验测定之间的 k l A 对于高固体负载和高粘度的水解浆料,对高固体加载和高粘度的水解浆料进行了良好的一致性。该研究提供了重要的信息和有用的工具,用于在高固体加载和高粘度的木质纤维素水解产物中实现有效的有氧发酵。测量的 k l a / i>使用木质纤维素原料的一般有氧发酵施加。]>

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