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首页> 外文期刊>ChemSusChem >Efficient Conversion of Lignin to Electricity Using a Novel Direct Biomass Fuel Cell Mediated by Polyoxometalates at Low Temperatures
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Efficient Conversion of Lignin to Electricity Using a Novel Direct Biomass Fuel Cell Mediated by Polyoxometalates at Low Temperatures

机译:使用在低温下通过多氧化血清介导的新型直接生物量燃料电池将木质素转化为电力

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摘要

A novel polyoxometalates (POMs) mediated direct biomass fuel cell (DBFC) was used in this study to directly convert lignin to electricity at low temperatures with high power output and Faradaic efficiency. When phosphomolybdic acid H3PMo12O40 (PMo12) was used as the electron and proton carrier in the anode solution with a carbon electrode, and O-2 was directly used as the final electron acceptor under the catalysis of Pt, the peak power density reached 0.96mWcm(-2), 560times higher than that of phenol-fueled microbial fuel cells (MFCs). When the cathode reaction was catalyzed by PMo12, the power density could be greatly enhanced to 5mWcm(-2). Continuous operation demonstrated that this novel fuel cell was promising as a stable electrochemical power source. Structure analysis of the lignin indicated that the hydroxyl group content was reduced whereas the carbonyl group content increased. Both condensation and depolymerization takes place during the PMo12 oxidation of lignin.
机译:在本研究中使用了一种新型多元氧酸酯(POMS)介导的直接生物量燃料电池(DBFC),直接将木质素直接转化为低温下的电力,具有高功率输出和法拉迪效率。 当用碳电极用作阳极溶液中的阳极溶液中的电子和质子载体时使用磷钼酸H3PMO12O40(PMO12),并且在PT的催化下直接用作最终电子受体,峰值功率密度达到0.96MWCM( -2),比苯酚燃料微生物燃料电池(MFC)高的560倍。 当通过PMO 12催化阴极反应时,可以大大增强功率密度至5MWCM(-2)。 连续操作证明,该新颖的燃料电池具有稳定的电化学电源。 木质素的结构分析表明羟基含量降低,而羰基含量增加。 在木质素的PMO 12氧化过程中发生缩合和解聚。

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