首页> 外文期刊>The Journal of Organic Chemistry >Chemical Recycling off Carbon Dioxide to Methanol and Dimethyl Ether: From Greenhouse Gas to Renewable, Environmentally Carbon Neutral Fuels and Synthetic Hydrocarbons
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Chemical Recycling off Carbon Dioxide to Methanol and Dimethyl Ether: From Greenhouse Gas to Renewable, Environmentally Carbon Neutral Fuels and Synthetic Hydrocarbons

机译:将二氧化碳从化学物质回收为甲醇和二甲醚:从温室气体到可再生的环保碳中性燃料和合成烃

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Nature's photosynthesis uses the sun's energy with chlorophyll in plants as a catalyst to recycle carbon dioxide and water into new plant life. Only given Sufficient geological time can new fossil fuels be formed naturally. In contrast, chemical recycling of carbon dioxide from natural and industrial Sources as well as varied human activities or even froth the air itself to methanol or dimethyl ether (DME) and their varied products can be achieved via its capture and subsequent reductive hydrogenative conversion. The present Perspective reviews this new approach and our research in the field over the last 15 years. Carbon recycling represents a significant aspect of our proposed Methanol Economy. Any available energy source (alternative energies such as solar, wind, geothermal, and atomic energy) can be used for the production of needed hydrogen and chemical conversion of CO2. Improved new methods for the efficient reductive conversion of CO2 to methanol and/or DME that we have developed include bireforming with methane and ways of catalytic or electrochemical conversions. Liquid methanol is preferable to highly volatile and potentially explosive hydrogen for energy storage and transportation. Together with the derived DME, they are excellent transportation fuels for internal combustion engines (ICE) and fuel cells as well as convenient starting materials for synthetic hydrocarbons and their varied products. Carbon dioxide thus can be chemically transformed from a detrimental greenhouse gas causing global warming into a valuable, renewable and inexhaustible carbon source of the future allowing environmentally neutral use of carbon fuels and derived hydrocarbon products.
机译:大自然的光合作用利用太阳的能量和植物中的叶绿素作为催化剂,将二氧化碳和水循环利用到新的植物生命中。只有在足够的地质时间内,才能自然形成新的化石燃料。相比之下,可以通过捕获和随后的还原性氢化转化来实现自然和工业来源二氧化碳的化学循环以及各种人类活动,甚至使空气本身起泡成甲醇或二甲醚(DME)及其各种产物。目前的观点回顾了这种新方法以及我们过去15年在该领域的研究。碳回收是我们拟议的甲醇经济的重要方面。任何可用的能源(诸如太阳能,风能,地热能和原子能之类的替代能源)都可用于生产所需的氢气和化学转化CO2。我们已经开发出用于将CO2有效还原转化为甲醇和/或DME的改进的新方法,包括用甲烷进行双重整以及催化或电化学转化的方法。液态甲醇优于高挥发性和潜在爆炸性的氢气,用于能量存储和运输。与衍生的DME一起,它们是内燃机(ICE)和燃料电池的优良运输燃料,也是合成碳氢化合物及其各种产品的便捷原材料。因此,二氧化碳可以从有害的温室气体化学转化为导致全球变暖的有害碳,从而成为未来有价值的,可再生的和取之不尽的碳源,从而可以在环境中中性使用碳燃料和衍生的碳氢化合物产品。

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