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Selective and mild hydrogen production using water and formaldehyde

机译:使用水和甲醛选择性和温和地制氢

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With the increased efforts in finding new energy storage systems for mobile and stationary applications, an intensively studied fuel molecule is dihydrogen owing to its energy content, and the possibility to store it in the form of hydridic and protic hydrogen, for example, in liquid organic hydrogen carriers. Here we show that water in the presence of paraformaldehyde or formaldehyde is suitable for molecular hydrogen storage, as these molecules form stable methanediol, which can be easily and selectively dehydrogenated forming hydrogen and carbon dioxide. In this system, both molecules are hydrogen sources, yielding a theoretical weight efficiency of 8.4% assuming one equivalent of water and one equivalent of formaldehyde. Thus it is potentially higher than formic acid (4.4 wt%), as even when technical aqueous formaldehyde (37 wt%) is used, the diluted methanediol solution has an efficiency of 5.0 wt%. The hydrogen can be efficiently generated in the presence of air using a ruthenium catalyst at low temperature.RI Prechtl, Martin/A-7416-2008OI Prechtl, Martin/0000-0003-2155-8006
机译:随着寻找用于移动和固定应用的新储能系统的努力,由于其能量含量高,并且经过深入研究的燃料分子正以氢和质子氢的形式(例如,以液态有机氢的形式)存储的可能性而被广泛研究。氢载体。在这里,我们表明存在多聚甲醛或甲醛的水适合分子氢的存储,因为这些分子形成稳定的甲烷二醇,可以轻松,选择性地将其脱氢形成氢气和二氧化碳。在该系统中,两个分子都是氢源,假设一当量的水和一当量的甲醛,理论重量效率为8.4%。因此,它可能高于甲酸(4.4重量%),因为即使使用工业甲醛水溶液(37重量%),稀释的甲烷二醇溶液的效率也为5.0重量%。氢气可在低温下使用钌催化剂在空气中高效产生.RI Prechtl,Martin / A-7416-2008OI Prechtl,Martin / 0000-0003-2155-8006

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