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利用开放式和封闭式沉积物微生物燃料电池进行生物修复和发电

Bioremediation and Electricity Generation by Using Open and Closed Sediment Microbial Fuel Cells.

作者信息

Abbas Syed Zaghum, Rafatullah Mohd, Khan Moonis Ali, Siddiqui Masoom Raza

机构信息

Division of Environmental Technology, School of Industrial Technology, Universiti Sains Malaysia, Penang, Malaysia.

Chemistry Department, College of Sciences, King Saud University, Riyadh, Saudi Arabia.

出版信息

Front Microbiol. 2019 Jan 14;9:3348. doi: 10.3389/fmicb.2018.03348. eCollection 2018.

Abstract

The industrial contamination of marine sediments with mercury, silver, and zinc in Penang, Malaysia was studied with bio-remediation coupled with power generation using membrane less open (aerated) and closed (non-aerated) sediment microbial fuel cells (SMFCs). The prototype for this SMFC is very similar to a natural aquatic environment because it is not stimulated externally and an oxygen sparger is inserted in the cathode chamber to create the aerobic environment in the open SMFC and no oxygen supplied in the closed SMFC. The open and closed SMFCs were showed the maximum voltage generation 300.5 mV (77.75 mW/m) and 202.7 mV (45.04 (mW/m), respectively. The cyclic voltammetry showed the oxidation peak in open SMFCs at +1.9 μA and reduction peak at -0.3 μA but in closed SMFCs oxidation and reduction peaks were noted at +1.5 μA and -1.0 μA, respectively. The overall impedance (anode, cathode and solution) of closed SMFCs was higher than open SMFCs. The charge transfer impedance showed that the rates of substrate oxidation and reduction were very low in the closed SMFCs than open SMFCs. The Nyquist arc indicated that O act as electron acceptor in the open SMFCs and CO in the closed SMFCs. The highest remediation efficiency of toxic metals [Hg (II) ions, Zn (II) ions, and Ag (I) ions] in the open SMFCs were 95.03%, 86.69%, and 83.65% in closed SMFCs were 69.53%, 66.57%, and 65.33%, respectively, observed during 60-80 days. The scanning electron microscope and 16S rRNA analysis showed diverse exoelectrogenic community in the open SMFCs and closed SMFCs. The results demonstrated that open SMFCs could be employed for the power generation and bioremediation of pollutants.

摘要

采用无膜开放式(曝气)和封闭式(非曝气)沉积物微生物燃料电池(SMFC)进行生物修复并耦合发电,对马来西亚槟城海洋沉积物中汞、银和锌的工业污染情况展开了研究。这种SMFC的原型与自然水生环境非常相似,因为它无需外部刺激,且在阴极室插入了氧气曝气器,以在开放式SMFC中营造有氧环境,而封闭式SMFC中不供应氧气。开放式和封闭式SMFC分别显示出最大电压产生为300.5 mV(77.75 mW/m)和202.7 mV(45.04 mW/m)。循环伏安法显示,开放式SMFC中的氧化峰为+1.9 μA,还原峰为-0.3 μA,而封闭式SMFC中的氧化峰和还原峰分别为+1.5 μA和-1.0 μA。封闭式SMFC的总阻抗(阳极、阴极和溶液)高于开放式SMFC。电荷转移阻抗表明,封闭式SMFC中底物氧化和还原的速率比开放式SMFC低得多。奈奎斯特曲线表明,在开放式SMFC中O作为电子受体,而在封闭式SMFC中CO作为电子受体。在60 - 80天期间观察到,开放式SMFC中有毒金属[Hg (II)离子、Zn (II)离子和Ag (I)离子]的最高修复效率分别为95.03%、86.69%和83.65%,封闭式SMFC中分别为69.53%、66.

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b47b/6339898/1e3e23c8af9d/fmicb-09-03348-g001.jpg

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