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Novel Heterogeneous Catalysts for CO2 Hydrogenation to Liquid Fuels

机译:用于液体燃料的二氧化碳氢化的新型异质催化剂

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摘要

Carbon dioxide (CO2) hydrogenation to liquid fuels including gasoline, jet fuel, diesel, methanol, ethanol, and other higher alcohols via heterogeneous catalysis, using renewable energy, not only effectively alleviates environmental problems caused by massive CO2 emissions, but also reduces our excessive dependence on fossil fuels. In this Outlook, we review the latest development in the design of novel and very promising heterogeneous catalysts for direct CO2 hydrogenation to methanol, liquid hydrocarbons, and higher alcohols. Compared with methanol production, the synthesis of products with two or more carbons (C2 ) faces greater challenges. Highly efficient synthesis of C2 products from CO2 hydrogenation can be achieved by a reaction coupling strategy that first converts CO2 to carbon monoxide or methanol and then conducts a C–C coupling reaction over a bifunctional/multifunctional catalyst. Apart from the catalytic performance, unique catalyst design ideas, and structure–performance relationship, we also discuss current challenges in catalyst development and perspectives for industrial applications.
机译:二氧化碳(CO2)氢化与液体燃料,包括汽油,喷射燃料,柴油,甲醇,乙醇和其他高级醇通过异质催化,使用可再生能源,不仅有效地减轻了大量二氧化碳排放引起的环境问题,而且还减少了我们过度的影响依赖化石燃料。在这一展望中,我们审查了新型和非常有前途的非均相催化剂的最新发展,用于直接CO 2氢化到甲醇,液​​体烃和更高醇。与甲醇生产相比,具有两种或更多种碳(C2)的产品的合成面临更大的挑战。通过首先将CO 2转化为一氧化碳或甲醇的反应偶联策略,可以实现高效合成来自CO 2氢化的C2产物,然后通过双官能/多官能催化剂进行C-C偶联反应。除了催化性能,独特的催化剂设计思想和结构 - 绩效关系之外,我们还讨论了当前催化剂开发和工业应用前景的挑战。

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