Université Clermont Auvergne, CNRS, Sigma Clermont, Institut Pascal, F-63000 Clermont-Ferrand, France.
Université Clermont Auvergne, CNRS, Sigma Clermont, Institut Pascal, F-63000 Clermont-Ferrand, France.
Bioresour Technol. 2021 Apr;325:124650. doi: 10.1016/j.biortech.2020.124650. Epub 2021 Jan 2.
The design, modeling and simulation of an integrated biorefinery plant assumed to convert different forestry assortments such as sawdust or shavings (sawmill waste) into bioethanol from cellulose and hemicellulose as the main product, and lignin as the most valuable co-product, was carried out. The proposed lignocellulosic ethanol biorefinery plant was simulated with ProSimPlus. The model was based on experimental results and includes an Organosolv pretreatment, enzymatic hydrolysis, fermentation and distillation to obtain bioethanol. The investigated plant size processed 70,088 tons of biomass/year, with a production capacity of 11,650 tons ethanol/year. Ethanol productivity reached 351 L/ton of dry feedstock. Considering water consumption, approximately 4.8 L of water were needed to produce a liter of ethanol. Finally, the energy targeting through conventional pinch analysis lead to 16.4 MW and 16.07 MW of hot and cold utility energy demand for the entire process respectively with the cogeneration of electricity.
对一个集成生物炼制厂的设计、建模和模拟进行了研究,该生物炼制厂假设将不同的林业品种(锯末或刨花(锯木厂废物)转化为纤维素和半纤维素的主要产品生物乙醇,以及木质素作为最有价值的联产产品。提出的木质纤维素乙醇生物炼制厂使用 ProSimPlus 进行了模拟。该模型基于实验结果,包括有机溶剂预处理、酶解、发酵和蒸馏以获得生物乙醇。所研究的工厂规模每年处理 70088 吨生物质,年产乙醇 11650 吨。乙醇生产率达到 351 升/吨干原料。考虑到耗水量,生产 1 升乙醇大约需要 4.8 升水。最后,通过常规夹点分析进行的能量目标分析导致整个过程分别需要 16.4MW 和 16.07MW 的热和冷公用工程能量需求,以及电力的热电联产。