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首页> 外文期刊>Turkish journal of chemistry >Hydrogen storage in formic acid as a renewable energy source using heterogeneous catalysis
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Hydrogen storage in formic acid as a renewable energy source using heterogeneous catalysis

机译:使用非均相催化将甲酸中的氢存储为可再生能源

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One of the most vital chemicals, which is not only found naturally but can also be synthesized in the laboratory, is formic acid (FA). FA is a key byproduct of several second-generation biorefinery processes as well, and it is used in several pharmaceutical and industrial applications. Recently, another significant use of FA that is taking the lead is as a form of fuel. This could either involve reformation, as a possible form of chemical hydrogen storage, or be done without reformation in the form of FA fuel cells, in particular because FA fuel cells are much more effective than other proton-exchange membrane fuel cells. Therefore, FA is a highly useful fuel for applications such as vehicles and portable devices. This review is based on recent developments and processes, showing that FA should become a prominent reversible source for hydrogen storage. Recent developments should permit a cheap and extremely effective source of rechargeable hydrogen fuel cells in the future. This will be possible through the usage of appropriate heterogeneous metal nanoparticle catalysts under ideal reaction conditions. The most significant aspect will be the usage of atmospheric CO$_{2}$, which is a greenhouse gas, to develop FA, as that would help to reduce the quantity of CO$_{2}$ in the atmosphere and diminish global warming.
机译:甲酸(FA)是最重要的化学物质之一,不仅可以自然发现,而且可以在实验室中合成。 FA也是几种第二代生物提炼工艺的关键副产品,并且已用于多种制药和工业应用。最近,带头的FA的另一项重要用途是作为一种燃料。这可能涉及重整(作为化学氢存储的一种可能形式),或者不进行重整而以FA燃料电池的形式进行,尤其是因为FA燃料电池比其他质子交换膜燃料电池更有效。因此,FA对于车辆和便携式设备等应用是非常有用的燃料。这项审查基于近期的发展和过程,表明FA应该成为氢存储的重要可逆来源。最近的发展应该会在将来提供廉价且极其有效的可再充电氢燃料电池来源。通过在理想的反应条件下使用适当的多相金属纳米颗粒催化剂,这将是可能的。最重要的方面将是使用大气中的CO __ {2} $(一种温室气体)来发展FA,因为这将有助于减少大气中的CO $ _ {2} $的数量并减少全球变暖。

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