Control of selectivity in the reduction of nitrate by shielding of Pd–Cu/C catalysts with AOT
Author:
Funder
Spanish AEI
Publisher
Elsevier BV
Subject
General Chemical Engineering
Reference36 articles.
1. Hydrogenation of nitrates in water using mesoporous membranes operated in a flow-through catalytic contactor
2. Electrochemical-catalytic reduction of nitrate over Pd–Cu/γAl 2 O 3 catalyst in cathode chamber: Enhanced removal efficiency and N 2 selectivity
3. Non-agricultural sources of groundwater nitrate: a review and case study
4. Remediation of water contamination using catalytic technologies
5. Effects of Natural Water Ions and Humic Acid on Catalytic Nitrate Reduction Kinetics Using an Alumina Supported Pd−Cu Catalyst
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1. Recent advances in nickel-based catalysts for electrochemical nitrate reduction to ammonia;Journal of Industrial and Engineering Chemistry;2023-11
2. Bimetallic Cu-Fe catalysts on MXene for synergistically electrocatalytic conversion of nitrate to ammonia;Journal of Colloid and Interface Science;2023-10
3. Pd and Pd-Cu supported on different carbon materials and immobilized as flow-through catalytic membranes for the chemical reduction of NO3-, NO2- and BrO3- in drinking water treatment;Journal of Environmental Chemical Engineering;2023-06
4. Development of Pd-based catalysts for hydrogenation of nitrite and nitrate in water: A review;Journal of Hazardous Materials;2023-03
5. Elimination of NO3 - from water using Pd and PdCu catalysis supported on ZrO2–CeO2 materials: Effect of the support preparation;Materials Chemistry and Physics;2023-02
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