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合成气发酵生产生物燃料:使用复合中空纤维(CHF)膜生物反应器评估一氧化碳传质和分析建模。

Syngas fermentation to biofuel: evaluation of carbon monoxide mass transfer and analytical modeling using a composite hollow fiber (CHF) membrane bioreactor.

机构信息

Department of Molecular Biosciences and Bioengineering (MBBE), University of Hawai'i at Mānoa, Agricultural Science Building 218, 1955 East-West Road, Honolulu, HI 96822, USA.

出版信息

Bioresour Technol. 2012 Oct;122:130-6. doi: 10.1016/j.biortech.2012.03.053. Epub 2012 Mar 24.

Abstract

In this study, the volumetric mass transfer coefficients (Ka) for CO were examined in a composite hollow fiber (CHF) membrane bioreactor. The mass transfer experiments were conducted at various inlet gas pressures (from 5 to 30 psig (34.5-206.8 kPa(g))) and recirculation flow rates (300, 600, 900, 1200 and 1500 mL/min) through CHF module. The highest Ka value of 946.6 1/h was observed at a recirculation rate of 1500 mL/min and at an inlet gas pressure of 30 psig(206.8 kPa(g)). The findings of this study confirm that the use of CHF membranes is effective and improves the efficiency CO mass transfer into the aqueous phase.

摘要

在这项研究中,考察了在复合中空纤维(CHF)膜生物反应器中 CO 的容积传质系数(Ka)。在不同的入口气体压力(5 至 30 psig(34.5-206.8 kPa(g)))和通过 CHF 模块的再循环流速(300、600、900、1200 和 1500 mL/min)下进行了传质实验。在再循环速率为 1500 mL/min 和入口气体压力为 30 psig(206.8 kPa(g))时,观察到最大的 Ka 值为 946.6 1/h。本研究的结果证实,使用 CHF 膜是有效的,并提高了 CO 向水相转移的效率。

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