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Simultaneous phenol removal and electricity generation using a hybrid granular activated carbon adsorption-biodegradation process in a batch recycled tubular microbial fuel cell

机译:在批量回收的管状微生物燃料电池中使用混合颗粒活性炭吸附-生物降解工艺同时去除苯酚和发电

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摘要

A microbial fuel cell (MFC) was efficiently integrated with adsorption process to remove a hardly degradable compound (phenol). For this purpose, a tubular recycled batch bioreactor was designed as a granular activated carbon (GAC) adsorption/MFC combined system (GAMFC). Effects of three important parameters, i.e. temperature, phenol concentration, and GAC dosage, on the performance of the GAMFC were investigated. Results revealed that the GAMFC could achieve an efficiency of 95% in phenol removal at optimum conditions, which was higher than the conventional MFC (75%). Additionally, power density increased to 110 mW m(-2) in the presence of GAC, while for the MFC it was only 70 mW m(-2). This improvement can be attributed to the role of GAC as a porous media in facilitating microbial growth as well as its contribution as an adsorbent. Experimental results in the GAMFC were simulated using a modified multi-order- Butler-Volmer equation and the inhibitory constant was 0.456 kg m(-3), which was higher than the MFC at the same condition (0.17 kg m(-3)). Columbic efficiency calculated for the GAMFC and the MFC at optimum conditions was 45.77% and 22.13%, respectively. Furthermore, a petrochemical wastewater containing a considerable amount of phenol was fed to the MFC and GAMFC systems, to evaluate their efficiencies in a real condition. The superior performance of the GAMFC compared to the MFC was also reconfirmed in this case.
机译:微生物燃料电池(MFC)有效地与吸附过程集成在一起,以去除难降解的化合物(苯酚)。为此,将管状的循环式批处理生物反应器设计为颗粒活性炭(GAC)吸附/ MFC组合系统(GAMFC)。研究了三个重要参数,即温度,苯酚浓度和GAC用量对GAMFC性能的影响。结果表明,GAMFC在最佳条件下的苯酚去除效率可达到95%,高于常规MFC(75%)。此外,在存在GAC的情况下,功率密度增加到110 mW m(-2),而对于MFC,功率密度仅为70 mW m(-2)。这种改善可以归因于GAC作为多孔介质在促进微生物生长中的作用及其作为吸附剂的作用。使用修正的多阶Butler-Volmer方程模拟GAMFC中的实验结果,其抑制常数为0.456 kg m(-3),高于相同条件下的MFC(0.17 kg m(-3))。 。在最佳条件下,GAMFC和MFC的哥伦比效率分别为45.77%和22.13%。此外,将含有大量苯酚的石化废水送入MFC和GAMFC系统,以评估其在实际条件下的效率。在这种情况下,也再次证明了GAMFC与MFC相比的优越性能。

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