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双金属 Pd-Sn 纳米催化剂电化学还原硝酸盐,具有可调选择性,有利于良性氮。

Electrochemical nitrate reduction over bimetallic Pd-Sn nanocatalysts with tunable selectivity toward benign nitrogen.

机构信息

Department of Chemical and Materials Engineering, Chang Gung University, Taoyuan, 33302, Taiwan; Division of Hematology-Oncology, Department of Internal Medicine, New Taipei Municipal TuCheng Hospital (Built and Operated by Chang Gung Medical Foundation), New Taipei City, 23600, Taiwan; Center for Sustainability and Energy Technologies, Chang Gung University, Taoyuan, 33302, Taiwan.

Center for Environmental Sustainability and Human Health, Ming Chi University of Technology, New Taipei City, 24301, Taiwan.

出版信息

Chemosphere. 2024 Feb;350:141182. doi: 10.1016/j.chemosphere.2024.141182. Epub 2024 Jan 9.

Abstract

Nitrate is recognized as a highly impactful water contaminant among various pollutants in water. To address the ever-growing demand for water purification, this work investigates the bimetallic palladium (Pd) and tin (Sn) catalysts, which are electrochemically deposited on stainless steel mesh support (Pd-Sn/SS) for the selective conversion of harmful nitrate (NO) into benign nitrogen (N) gas. Results indicate that the bimetallic composition in Pd-Sn/SS electrodes substantially influenced the reaction route for nitrate reduction as well as the performance of nitrate transformation and nitrogen selectivity. It is found that the electrode prepared from Pd:Sn = 1:1 (mole ratio) demonstrates an outstanding nitrate conversion of 95%, nitrogen selectivity of 88%, and nitrogen yield of 82%, which outperform many reported values in the literature. The electrochemically synthesized bimetallic electrode proposed herein enables a new insight for promoting the reactivity and selectivity of nitrate reduction in water.

摘要

硝酸盐是水中各种污染物中极具影响力的一种水污染物。为了满足对水净化日益增长的需求,这项工作研究了双金属钯(Pd)和锡(Sn)催化剂,它们被电化学沉积在不锈钢网支架上(Pd-Sn/SS),用于将有害的硝酸盐(NO)选择性转化为无害的氮气(N)气体。结果表明,Pd-Sn/SS 电极中的双金属组成极大地影响了硝酸盐还原的反应途径以及硝酸盐转化和氮选择性的性能。结果发现,由 Pd:Sn = 1:1(摩尔比)制备的电极表现出 95%的优异硝酸盐转化率、88%的氮气选择性和 82%的氮气产率,优于文献中许多报道的值。本文提出的电化学合成双金属电极为促进水中硝酸盐还原的反应性和选择性提供了新的见解。

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