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在磁场流化床反应器中使用固定在磁性氧化铁-聚乙烯醇复合珠内的全细胞生物催化剂生产生物柴油。

Biodiesel production in a magnetically fluidized bed reactor using whole-cell biocatalysts immobilized within ferroferric oxide-polyvinyl alcohol composite beads.

机构信息

School of Agricultural Engineering and Food Science, Shandong Research Center of Engineering & Technology for Clean Energy, Shandong University of Technology, Zibo 255000, China; Guangdong Provincial Key Laboratory of New and Renewable Energy Research and Development, Guangzhou 510640, China; School of Environmental Science and Engineering, Tianjin University, Tianjin 300072, China.

School of Environmental Science and Engineering, Tianjin University, Tianjin 300072, China; School of Mechanical Engineering, Tianjin University of Commerce, Tianjin 300134, China.

出版信息

Bioresour Technol. 2022 Jul;355:127253. doi: 10.1016/j.biortech.2022.127253. Epub 2022 May 2.

Abstract

Magnetic whole-cell biocatalysts (MWCBs) constructed by immobilizing Bacillus subtiliscells within ferroferric oxide-polyvinyl alcohol composite beads were developed and employed to transesterify waste frying oil to biodiesel in a magnetically fluidized bed reactor (MFBR). Effective variables including biocatalysts concentration, reactant flow rate, magnetic field intensity and temperature were evaluated to enhance the transesterification. By coupling MFBR with MWCBs, continuous biodiesel production was achieved. Response surface methodology and Box-Behnken design were employed to predict the optimal conditions and the maximum biodiesel yield reached 89.0 ± 0.6% after 48 h under the optimized conditions. Furthermore, MWCBs displayed satisfactory stability and reusability in MFBR and still maintained a biodiesel yield of more than 82.5% after 10 cycles. Lastly, the fuel properties of the obtained biodiesel met the ASTM and EN standards. The present study revealed that the route of producing biodiesel over MWCBs in the MFBR system showed great potential for industrialization.

摘要

磁性全细胞生物催化剂(MWCBs)是通过将枯草芽孢杆菌细胞固定在氧化铁-聚乙烯醇复合珠中构建的,并将其用于在磁流化床反应器(MFBR)中将废煎炸油转化为生物柴油。评估了有效变量,包括生物催化剂浓度、反应物流速、磁场强度和温度,以增强酯交换反应。通过将 MFBR 与 MWCBs 耦合,实现了连续的生物柴油生产。响应面法和 Box-Behnken 设计用于预测最佳条件,在优化条件下反应 48 小时后,生物柴油的最大产率达到 89.0±0.6%。此外,MWCBs 在 MFBR 中表现出良好的稳定性和可重复使用性,经过 10 次循环后仍保持生物柴油产率超过 82.5%。最后,所获得的生物柴油的燃料性能符合 ASTM 和 EN 标准。本研究表明,MWCBs 在 MFBR 系统中生产生物柴油的途径具有很大的工业化潜力。

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