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首页> 外文期刊>Angewandte Chemie >Highly Efficient CO2 Utilization via Aqueous Zinc- or Aluminum-CO2 Systems for Hydrogen Gas Evolution and Electricity Production
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Highly Efficient CO2 Utilization via Aqueous Zinc- or Aluminum-CO2 Systems for Hydrogen Gas Evolution and Electricity Production

机译:通过锌或铝-CO2系统提供高效的二氧化碳利用,用于氢气进化和电力生产

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摘要

Atmospheric carbon dioxide (CO2) has increased from 278 to 408 parts per million (ppm) over the industrial period and has critically impacted climate change. In response to this crisis, carbon capture, utilization, and storage/ sequestration technologies have been studied. So far, however, the economic feasibility of the existing conversion technologies is still inadequate owing to sluggish CO2 conversion. Herein, we report an aqueous zinc-and aluminum-CO2 system that utilizes acidity from spontaneous dissolution of CO2 in aqueous solution to generate electrical energy and hydrogen (H-2). The system has a positively shifted onset potential of hydrogen evolution reaction (HER) by 0.4V compared to a typical HER under alkaline conditions and facile HER kinetics with low Tafel slope of 34 mVdec @ 1. The Al-CO2 system has a maximum power density of 125 mWcm @ 2 which is the highest value among CO2 utilization electrochemical system.
机译:大气二氧化碳(CO2)在工业期间从278%增加到每百万%(PPM),并对气候变化具有严重影响。 针对这种危机,研究了碳捕获,利用和储存/封存技术。 然而,到目前为止,由于二氧化碳转换缓慢,现有转换技术的经济可行性仍然不足。 在此,我们报告了一种含水锌 - 和铝-CO2系统,其利用来自水溶液中CO 2的自发溶解的酸度,以产生电能和氢气(H-2)。 该系统与碱性条件下的典型的诸如典型的诸如碱性条件下的典型的氢气进化反应(她)的氢进化潜力具有正变化的发病潜力,并使她的动力学与34mVdec @ 1的低Tafel斜率。Al-Co2系统具有最大功率密度 在125 MWCM @ 2中,这是CO2利用电化学系统中的最高值。

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