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Highly Efficient Electrochemical Nitrate Reduction to Ammonia in Strong Acid Conditions with Fe2 M-Trinuclear-Cluster Metal-Organic Frameworks.
Lv, Yang; Ke, Si-Wen; Gu, Yuming; Tian, Bailin; Tang, Lingyu; Ran, Pan; Zhao, Yue; Ma, Jing; Zuo, Jing-Lin; Ding, Mengning.
Afiliação
  • Lv Y; Key Laboratory of Mesoscopic Chemistry, State Key Laboratory of Coordination Chemistry, State Key Laboratory of Analytical Chemistry for Life Sciences, School of Chemistry and Chemical Engineering, Nanjing University, No.168, Xianlin Road, Nanjing, 210023, China.
  • Ke SW; Key Laboratory of Mesoscopic Chemistry, State Key Laboratory of Coordination Chemistry, State Key Laboratory of Analytical Chemistry for Life Sciences, School of Chemistry and Chemical Engineering, Nanjing University, No.168, Xianlin Road, Nanjing, 210023, China.
  • Gu Y; Key Laboratory of Mesoscopic Chemistry, State Key Laboratory of Coordination Chemistry, State Key Laboratory of Analytical Chemistry for Life Sciences, School of Chemistry and Chemical Engineering, Nanjing University, No.168, Xianlin Road, Nanjing, 210023, China.
  • Tian B; Jiangsu Key Laboratory of Advanced Organic Materials, School of Chemistry and Chemical Engineering, Nanjing University, No.168, Xianlin Road, Nanjing, 210023, China.
  • Tang L; Key Laboratory of Mesoscopic Chemistry, State Key Laboratory of Coordination Chemistry, State Key Laboratory of Analytical Chemistry for Life Sciences, School of Chemistry and Chemical Engineering, Nanjing University, No.168, Xianlin Road, Nanjing, 210023, China.
  • Ran P; Key Laboratory of Mesoscopic Chemistry, State Key Laboratory of Coordination Chemistry, State Key Laboratory of Analytical Chemistry for Life Sciences, School of Chemistry and Chemical Engineering, Nanjing University, No.168, Xianlin Road, Nanjing, 210023, China.
  • Zhao Y; Key Laboratory of Mesoscopic Chemistry, State Key Laboratory of Coordination Chemistry, State Key Laboratory of Analytical Chemistry for Life Sciences, School of Chemistry and Chemical Engineering, Nanjing University, No.168, Xianlin Road, Nanjing, 210023, China.
  • Ma J; Key Laboratory of Mesoscopic Chemistry, State Key Laboratory of Coordination Chemistry, State Key Laboratory of Analytical Chemistry for Life Sciences, School of Chemistry and Chemical Engineering, Nanjing University, No.168, Xianlin Road, Nanjing, 210023, China.
  • Zuo JL; Key Laboratory of Mesoscopic Chemistry, State Key Laboratory of Coordination Chemistry, State Key Laboratory of Analytical Chemistry for Life Sciences, School of Chemistry and Chemical Engineering, Nanjing University, No.168, Xianlin Road, Nanjing, 210023, China.
  • Ding M; Jiangsu Key Laboratory of Advanced Organic Materials, School of Chemistry and Chemical Engineering, Nanjing University, No.168, Xianlin Road, Nanjing, 210023, China.
Angew Chem Int Ed Engl ; 62(27): e202305246, 2023 Jul 03.
Article em En | MEDLINE | ID: mdl-37158129
ABSTRACT
Nitrate-containing industrial wastewater poses a serious threat to the global food security and public health safety. As compared to the traditional microbial denitrification, electrocatalytic nitrate reduction shows better sustainability with ultrahigh energy efficiency and the production of high-value ammonia (NH3 ). However, nitrate-containing wastewater from most industrial processes, such as mining, metallurgy, and petrochemical engineering, is generally acidic, which contradicts the typical neutral/alkaline working conditions for both denitrifying bacteria and the state-of-the-art inorganic electrocatalysts, leading to the demand for pre-neutralization and the problematic hydrogen evaluation reaction (HER) competition and catalyst dissolution. Here, we report a series of Fe2 M (M=Fe, Co, Ni, Zn) trinuclear cluster metal-organic frameworks (MOFs) that enable the highly efficient electrocatalytic nitrate reduction to ammonium under strong acidic conditions with excellent stability. In pH=1 electrolyte, the Fe2 Co-MOF demonstrates the NH3 yield rate of 20653.5 µg h-1 mg-1 site with 90.55 % NH3 -Faradaic efficiency (FE), 98.5 % NH3 -selectivity and up to 75 hr of electrocatalytic stability. Additionally, successful nitrate reduction in high-acidic conditions directly produce the ammonium sulfate as nitrogen fertilizer, avoiding the subsequent aqueous ammonia extraction and preventing the ammonia spillage loss. This series of cluster-based MOF structures provide new insights into the design principles of high-performance nitrate reduction catalysts under environmentally-relevant wastewater conditions.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article