Bayode Ajibola A, Ore Odunayo T, Nnamani Esther A, Sotunde Babajide, Koko Daniel T, Unuabonah Emmanuel I, Helmreich Brigitte, Omorogie Martins O
College of Chemical Engineering, Sichuan University of Science and Engineering, Zigong 643000, P. R. China.
Department of Chemical Sciences, Faculty of Natural Sciences, Redeemer's University, P.M.B. 230, 232101 Ede, Nigeria.
ACS Omega. 2024 Apr 23;9(18):19770-19785. doi: 10.1021/acsomega.4c01487. eCollection 2024 May 7.
Over the decades, the rise in nitrate levels in the ecosystem has posed a serious threat to the continuous existence of humans, fauna, and flora. The deleterious effects of increasing levels of nitrates in the ecosystem have led to adverse health and environmental implications in the form of methemoglobinemia and eutrophication, respectively. Different pathways/routes for the syntheses of perovskites and their oxides were presented in this review. In recent times, electrocatalytic reduction has emerged as the most utilized technique for the conversion of nitrates into ammonia, an industrial feedstock. According to published papers, the efficiency of various perovskites and their oxides used for the electrocatalytic reduction of nitrate achieved a high Faradaic efficiency of 98%. Furthermore, studies published have shown that there is a need to improve the chemical stability of perovskites and their oxides during scale-up applications, as well as their scalability for industrial applications.
几十年来,生态系统中硝酸盐水平的上升对人类、动植物的持续生存构成了严重威胁。生态系统中硝酸盐水平升高的有害影响分别导致了高铁血红蛋白血症和富营养化等不良健康和环境问题。本综述介绍了钙钛矿及其氧化物合成的不同途径/路线。近年来,电催化还原已成为将硝酸盐转化为工业原料氨的最常用技术。根据已发表的论文,用于硝酸盐电催化还原的各种钙钛矿及其氧化物的效率实现了98%的高法拉第效率。此外,已发表的研究表明,在扩大应用规模过程中需要提高钙钛矿及其氧化物的化学稳定性,以及它们在工业应用中的可扩展性。