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Enhancement of Electricity Production by Graphene Oxide in Soil Microbial Fuel Cells and Plant Microbial Fuel Cells

机译:氧化石墨烯提高土壤微生物燃料电池和植物微生物燃料电池的发电量

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摘要

The effects of graphene oxide (GO) on electricity generation in soil microbial fuel cells (SMFCs) and plant microbial fuel cell (PMFCs) were investigated. GO at concentrations ranging from 0 to 1.9 g⋅kg−1 was added to soil and reduced for 10 days under anaerobic incubation. All SMFCs (GO-SMFCs) utilizing the soils incubated with GO produced electricity at a greater rate and in higher quantities than the SMFCs which did not contain GO. In fed-batch operations, the overall average electricity generation in GO-SMFCs containing 1.0 g⋅kg−1 of GO was 40 ± 19 mW⋅m−2, which was significantly higher than the value of 6.6 ± 8.9 mW⋅m−2 generated from GO-free SMFCs (p < 0.05). The increase in catalytic current at the oxidative potential was observed by cyclic voltammetry (CV) for GO-SMFC, with the CV curve suggesting the enhancement of electron transfer from oxidation of organic substances in the soil by the reduced form of GO. The GO-containing PMFC also displayed a greater generation of electricity compared to the PMFC with no added GO, with GO-PMFC producing 49 mW⋅m−2 of electricity after 27 days of operation. Collectively, this study demonstrates that GO added to soil can be microbially reduced in soil, and facilitates electron transfer to the anode in both SMFCs and PMFCs.
机译:研究了氧化石墨烯(GO)对土壤微生物燃料电池(SMFCs)和植物微生物燃料电池(PMFCs)发电的影响。向土壤中添加浓度为0到1.9 g·kg -1 的GO,并在厌氧条件下还原10 d天。与不含有GO的SMFC相比,所有利用GO孵育的土壤的SMFC(GO-SMFC)产生的电率更高,数量更多。在补料分批运行中,GO含量为1.0g⋅kg -1 的GO-SMFC的平均总发电量为40±19mW⋅m -2 ,这是明显高于不含GO的SMFC产生的6.6±8.9mW⋅m −2 的值(p <0.05)。 GO-SMFC的循环伏安法(CV)观察到了氧化电位下催化电流的增加,该CV曲线表明,GO的还原形式增强了土壤中有机物氧化产生的电子转移。与不添加GO的PMFC相比,含GO的PMFC的发电量也更大,在运行27天后,GO-PMFC产生49 mW·m -2 的电。总的来说,这项研究表明添加到土壤中的GO可以在土壤中被微生物还原,并促进SMFC和PMFC中电子转移到阳极。

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