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首页> 外文期刊>ACS applied materials & interfaces >Facile Designed Manganese Oxide/Biochar for Efficient Salinity Gradient Energy Recovery in Concentration Flow Cells and Influences of Mono/Multivalent Ions
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Facile Designed Manganese Oxide/Biochar for Efficient Salinity Gradient Energy Recovery in Concentration Flow Cells and Influences of Mono/Multivalent Ions

机译:Facile设计的锰氧化物/生物炭,用于高效盐度梯度能量回收浓度流动细胞和单型/多价离子的影响

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摘要

Development of effective, environmentally friendly, facile large-scale processing, and low-cost materials is critical for renewable energy production. Here, MnOx/biochar composites were synthesized by a simple pyrolysis method and showed high performance for salinity gradient ( SG) energy harvest in concentration flow cells (CFCs). The peak power density of CFCs with MnOx/biochar electrodes was up to 5.67 W m(-2) (ave. = 0.91 W m(-2)) and stabilized for 500 cycles when using 1 and 30 g L-1 NaCl, which was attributed to their high specific capacitances and low electrode resistances. This power output was higher than all other reported MnO2 electrodes for SG energy harvest due to the synergistic effects between MnOx and biochar. When using a mixture with a molar fraction of 90% NaCl and 10% KCl (or Na2SO4, MgCl2, MgSO4, and CaCl2) in both feed solutions, the peak power density decreased by 2.3-40.1% compared to 100% NaCl solution with Ca2+ and Mg2+ showing the most pronounced negative effects. Our results demonstrated that the facile designed MnOx/biochar composite can be used for efficient SG energy recovery in CFCs with good stability, low cost, and less environmental impacts. When using natural waters as the feed solutions, pretreatment would be needed.
机译:开发高效、环保、易于大规模加工和低成本的材料对可再生能源生产至关重要。在这里,通过简单的热解方法合成了MnOx/生物炭复合材料,并在浓缩流动池(CFCs)中显示出高性能的盐度梯度(SG)能量收集。当使用1和30 g L-1 NaCl时,使用MnOx/生物炭电极的CFC的峰值功率密度高达5.67 W m(-2)(平均值=0.91 W m(-2)),并稳定了500个循环,这归因于它们的高比电容和低电极电阻。由于MnOx和生物炭之间的协同效应,该功率输出高于所有其他报道的用于SG能量收集的MnO2电极。当在两种进料溶液中使用摩尔分数为90%NaCl和10%KCl(或Na2SO4、MgCl2、MgSO4和CaCl2)的混合物时,与100%NaCl溶液相比,峰值功率密度降低了2.3-40.1%,Ca2+和Mg2+表现出最显著的负面影响。我们的研究结果表明,设计简单的MnOx/生物炭复合材料可用于CFC中高效的SG能量回收,具有良好的稳定性、低成本和较少的环境影响。当使用天然水作为饲料溶液时,需要进行预处理。

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