Oh Hyeon Woo, Lee Seong Chan, Woo Hee Chul, Kim Young Han
Department of Chemical Engineering, Pukyong National University, 365 Shinsun-ro, Nam-gu, Busan, 48547, South Korea.
Biotechnol Biofuels Bioprod. 2022 May 6;15(1):46. doi: 10.1186/s13068-022-02146-6.
A butyric acid recovery process using octyl acetate is proposed, and the design details of the extraction and subsequent distillation processes were investigated. Ternary equilibrium data for the extractor design were derived from molecular simulations and experimental measurements.
A new procedure for estimating the thermodynamic parameters was introduced to determine the effect of the parameters on extractor design by comparison with previously reported parameters. Using the proposed recovery process with the newly estimated thermodynamic model, 99.8% butyric acid was recovered from the fermentation broth at a recovery rate of 99%. The energy demand for the proposed process was found to be lower than the average demand for several reported butyric acid recovery processes.
The investment cost is projected to be lower than that of other butyric acid processes due to the high efficiency of extraction solvent. The recovery cost of butyric acid was comparable to its selling price.
提出了一种使用乙酸辛酯回收丁酸的工艺,并对萃取及后续蒸馏工艺的设计细节进行了研究。用于萃取器设计的三元平衡数据来自分子模拟和实验测量。
引入了一种估算热力学参数的新方法,通过与先前报道的参数进行比较来确定这些参数对萃取器设计的影响。使用新估算的热力学模型的提议回收工艺,从发酵液中回收了99.8%的丁酸,回收率为99%。发现该提议工艺的能源需求低于几个已报道的丁酸回收工艺的平均需求。
由于萃取溶剂效率高,预计投资成本低于其他丁酸工艺。丁酸的回收成本与其销售价格相当。