Perovskite Oxides: Syntheses and Perspectives on Their Application for Nitrate Reduction.
Ajibola A BayodeOdunayo T OreEsther A NnamaniBabajide SotundeDaniel T KokoEmmanuel I UnuabonahBrigitte HelmreichMartins O OmorogiePublished in: ACS omega (2024)
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.
Keyphrases
- human health
- solar cells
- nitric oxide
- drinking water
- climate change
- heavy metals
- wastewater treatment
- public health
- healthcare
- risk assessment
- reduced graphene oxide
- room temperature
- mental health
- metal organic framework
- emergency department
- gold nanoparticles
- randomized controlled trial
- systematic review
- meta analyses
- health information
- anaerobic digestion
- electronic health record