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Solar hydrogen production from seawater vapor electrolysis

机译:海水蒸气电解生产太阳能氢

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摘要

Solar photovoltaic utilities require large land areas to produce power equivalent to a conventional fossil fuel utility, and also must be coupled to cost-effective energy storage to overcome the intermittency of sunlight and provide reliable, continuous energy generation. To target both of these disadvantages, a method was demonstrated to produce hydrogen fuel from solar energy by splitting seawater vapor from ambient humidity at near-surface ocean conditions. Using a proton exchange membrane electrolyzer with seawater-humidified air at 80% relative humidity at the anode and dry N-2 at the cathode, sufficient electrolysis current density was maintained to operate near the maximum energy-conversion point when driven by a triple-junction amorphous Si solar cell of equivalent area. Fluctuations in atmospheric water content were demonstrated to have minimal effect on the solar-to-hydrogen efficiency, remaining similar to 6% with relative humidity >= 30%. Direct solar-driven H-2 production from seawater vapor was maintained at >4.5 mA cm(-2) for >90 hours. The calculated solar-to-hydrogen conversion efficiency before and after 50 h of operation changed from 6.0% to 6.3% using an ambient seawater humidity feedstock as compared to a drop from 6.6% to 0.5% using liquid seawater feedstock.
机译:太阳能光伏电站需要大面积的土地来生产与传统化石燃料电站相当的电力,并且还必须与具有成本效益的储能相结合,以克服阳光的间歇性并提供可靠,连续的能量产生。为了解决这两个缺点,已证明了一种方法,该方法通过在近地表海洋条件下从环境湿度中分离出海水蒸气来从太阳能中生产氢燃料。使用质子交换膜电解槽,在阳极处使用相对湿度为80%的海水湿润的空气,在阴极处使用干燥的N-2,当通过三结驱动时,可以保持足够的电解电流密度以在最大能量转换点附近运行等效面积的非晶硅太阳能电池。事实证明,大气水含量的波动对太阳能转化效率影响最小,在相对湿度> = 30%时保持接近6%。由海水蒸气直接产生的太阳能驱动的H-2生产维持在> 4.5 mA cm(-2)的时间超过90小时。使用环境海水湿度给水后,在运行50小时之前和之后所计算出的太阳能转化为氢的效率从6.0%降至6.3%,而使用液态海水给水则从6.6%降至0.5%。

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  • 来源
    《Energy & environmental science》 |2016年第5期|1725-1733|共9页
  • 作者单位

    Univ Louisville, Conn Ctr Renewable Energy Res, Louisville, KY 40292 USA;

    Univ Louisville, Conn Ctr Renewable Energy Res, Louisville, KY 40292 USA;

    Univ Louisville, Conn Ctr Renewable Energy Res, Louisville, KY 40292 USA;

    Univ Louisville, Conn Ctr Renewable Energy Res, Louisville, KY 40292 USA;

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