Process development and techno‐economic analysis of bio‐based succinic acid derived from pentoses integrated to a sugarcane biorefinery

生物炼制 蔗渣 琥珀酸 制浆造纸工业 生物量(生态学) 可再生能源 乙醇燃料 化学 戊糖 化学工业 生物燃料 生物技术 废物管理 发酵 环境科学 工程类 食品科学 生物化学 有机化学 农学 生物 电气工程
作者
Bruno Colling Klein,Jean Felipe Leal Silva,Tassia L. Junqueira,Sarita Cândida Rabelo,Priscila Vaz de Arruda,Jaciane Lutz Ienczak,Paulo E. Mantelatto,José Geraldo da Cruz Pradella,Sílvio Vaz,Antonio Bonomi
出处
期刊:Biofuels, Bioproducts and Biorefining [Wiley]
卷期号:11 (6): 1051-1064 被引量:68
标识
DOI:10.1002/bbb.1813
摘要

Abstract Bio‐based succinic acid is a potential building block for the production of renewable chemicals and polymers. The use of hemicellulosic hydrolyzate from sugarcane bagasse allows production of succinic acid without competing with food chains and increasing the biomass ‐aggregated value. This work assesses the economic impacts of integrating the production of ‐succinic acid on an optimized sugarcane biorefinery with the production of first‐generation ethanol and electricity. Process simulation was performed to obtain mass and energy balances of the entire process, from bagasse pre‐treatment to pentose fermentation and succinic acid recovery, using several pieces of technical information and data taken from the scientific literature. After ‐assessing the impacts of key economic variables through risk analysis, the obtained results were benchmarked against those of an optimized ethanol distillery. Calculated succinic acid production cost was US$ 2.32/kg, comparable to costs related to less expensive sugar sources. The integrated succinic acid biorefinery presented a slightly lower internal rate of return (IRR) compared to an ‐ethanol distillery. However, even when considering uncertainties, succinic acid production has a strong probability (84.6%) of achieving an IRR higher than 12%. © 2017 Society of Chemical Industry and John Wiley & Sons, Ltd
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