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首页> 外文期刊>Electrochimica Acta >An effective self-driven PFC-PEC hybrid system for hydrogen generation from organic substance
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An effective self-driven PFC-PEC hybrid system for hydrogen generation from organic substance

机译:一种用于有机物质的氢生成的有效自动的PFC-PEC混合系统

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Here, we report the feasibility and effectiveness of hydrogen generation based on solar light and organic substance degradation, by coupling a photoelectrochemical cell (PEC) and photo fuel cell (PFC) in a hybrid system. The PEC cell was consisted of a TiO2 nanorod arrays photoanode and a Pt cathode. The PFC was composed of the same photoanode and an air cathode. Under light illumination, PFC cell decomposed the glucose and converted its chemical energy into electric energy, simultaneously. In this hybrid PEC-PFC platform, the electricity produced by PFC serves as potential bias to the PEC cell with the aim to improve the photocurrent generated and hydrogen evolved. The hybrid PEC-PFC system generated a photocurrent density of 0.3 A m(-2) (similar to 5 x enhancement) as compared with the stand-alone PEC cell (0.06 A m(-2)) under illumination (100 mW/cm(2)). This increase in photocurrent density led to significantly improving in H2 production. Trace amount of H-2 was observed in the PEC cell whereas H-2 evolution rate was similar to 0.55 mu mol/ h in the hybrid system. The successful demonstration of such a self-biased PEC-PFC hybrid system for hydrogen generation provides a new way for simultaneous clean energy recover and wastewater treatment. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在这里,我们通过在混合系统中偶联光电化学电池(PEC)和光电电池(PFC)来报告基于太阳光和有机物质降解的氢气产生的可行性和有效性。 PEC电池由TiO2纳米座阵列光电码和Pt阴极组成。 PFC由相同的光电码和空气阴极组成。在轻度照射下,PFC细胞同时分解葡萄糖并将其化学能转化为电能。在该混合PEC-PFC平台中,PFC产生的电力用作PEC电池的潜在偏压,其目的是改善产生的光电流和氢化的氢。与在照明(100mW / cm的0.06aM(-2))相比,混合PEC-PFC系统产生0.3a m(-2)(类似于5 x增强)的光电流密度(类似于5 x增强)(100mW / cm (2))。这种光电流密度的增加导致H2生产中显着改善。在PEC细胞中观察到痕量的H-2,而H-2进化速率在杂交系统中类似于0.55μmol/ h。这种自偏偏压PEC-PFC混合系统的氢气发电系统的成功示范为同时清洁能量回收和废水处理提供了一种新的方式。 (c)2017 Elsevier Ltd.保留所有权利。

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