Diab Gabriel A A, da Silva Marcos A R, Rocha Guilherme F S R, Noleto Luis F G, Rogolino Andrea, de Mesquita João P, Jiménez-Calvo Pablo, Teixeira Ivo F
Department of Chemistry Federal University of São Carlos Rod. Washington Luís km 235 - SP São Carlos SP 13565-905 Brazil.
Cavendish Laboratory University of Cambridge Cambridge CB3 0HE UK.
Glob Chall. 2023 Nov 20;8(6):2300185. doi: 10.1002/gch2.202300185. eCollection 2024 Jun.
Green hydrogen is the key to the chemical industry achieving net zero emissions. The chemical industry is responsible for almost 2% of all CO emissions, with half of it coming from the production of simple commodity chemicals, such as NH, HO, methanol, and aniline. Despite electrolysis driven by renewable power sources emerging as the most promising way to supply all the green hydrogen required in the production chain of these chemicals, in this review, it is worth noting that the photocatalytic route may be underestimated and can hold a bright future for this topic. In fact, the production of H by photocatalysis still faces important challenges in terms of activity, engineering, and economic feasibility. However, photocatalytic systems can be tailored to directly convert sunlight and water (or other renewable proton sources) directly into chemicals, enabling a solar-to-chemical strategy. Here, a series of recent examples are presented, demonstrating that photocatalysis can be successfully employed to produce the most important commodity chemicals, especially on NH, HO, and chemicals produced by reduction reactions. The replacement of fossil-derived H in the synthesis of these chemicals can be disruptive, essentially safeguarding the transition of the chemical industry to a low-carbon economy.
绿色氢是化工行业实现净零排放的关键。化工行业的二氧化碳排放量占全球总排放量的近2%,其中一半来自简单大宗商品化学品的生产,如氨、水、甲醇和苯胺。尽管由可再生能源驱动的电解正成为供应这些化学品生产链所需的所有绿色氢的最有前景的方式,但在本综述中,值得注意的是,光催化途径可能被低估了,并且在这个领域可能有着光明的未来。事实上,光催化制氢在活性、工程和经济可行性方面仍面临重大挑战。然而,光催化系统可以进行定制,以直接将阳光和水(或其他可再生质子源)转化为化学品,从而实现太阳能到化学品的策略。在此,展示了一系列近期的实例,表明光催化可以成功用于生产最重要的大宗商品化学品,特别是氨、水以及通过还原反应生产的化学品。在这些化学品的合成中用化石衍生的氢进行替代可能具有颠覆性,从根本上保障化工行业向低碳经济的转型。