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Recent Advances in Transition Metal-Based Catalysts for Electrocatalytic Nitrate Reduction Reaction
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作者 LUO Hongxia CHEN Jun YANG Jianping 《Journal of Donghua University(English Edition)》 CAS 2024年第4期333-348,共16页
The accumulation of excessive nitrate in the atmosphere not only jeopardizes human health but also disrupts the balance of the nitrogen cycle in the ecosystem.Among various nitrate removal technologies,electrocatalyti... The accumulation of excessive nitrate in the atmosphere not only jeopardizes human health but also disrupts the balance of the nitrogen cycle in the ecosystem.Among various nitrate removal technologies,electrocatalytic nitrate reduction reaction(eNO_(3)RR)has been widely studied for its advantages of being eco-friendly,easy to operate,and controllable under environmental conditions with renewable energy as the driving force.Transition metal-based catalysts(TMCs)have been widely used in electrocatalysis due to their abundant reserves,low costs,easy-to-regulate electronic structure and considerable electrochemical activity.In addition,TMCs have been extensively studied in terms of the kinetics of the nitrate reduction reaction,the moderate adsorption energy of nitrogen-containing species and the active hydrogen supply capacity.Based on this,this review firstly discusses the mechanism as well as analyzes the two main reduction products(N_(2)and NH_(3))of eNO_(3)RR,and reveals the basic guidelines for the design of efficient nitrate catalysts from the perspective of the reaction mechanism.Secondly,this review mainly focuses on the recent advances in the direction of eNO_(3RR)with four types of TMCs,Fe,Co,Ni and Cu,and unveils the interfacial modulation strategies of Fe,Co,Ni and Cu catalysts for the activity,reaction pathway and stability.Finally,reasonable suggestions and opportunities are proposed for the challenges and future development of eNO_(3)RR.This review provides far-reaching implications for exploring cost-effective TMCs to replace high-cost noble metal catalysts(NMCs)for eNO_(3)RR. 展开更多
关键词 electrocatalysis nitrate reduction reaction transition metal-based catalyst(tmc) reaction mechanism nitrogen cycle
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SUPPORTED ZIEGLER-NATTA CATALYSTS FOR ETHYLENE SLURRY POLYMERIZATION AND CONTROL OF MOLECULAR WEIGHT DISTRIBUTION OF POLYETHYLENE 被引量:1
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作者 Vladimir Zakharov Ludmila Echevskaya +4 位作者 Tatiana Mikenas Mikhail Matsko Andrey Tregubov Marina Vanina Marina Nikolaeva 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2008年第5期553-559,共7页
The effect of chemical composition of highly active supported Ziegler-Natta catalysts with controlled morphology on the MWD of PE has been studied.It was shown the variation of transition metal compound in the MgCl_2-... The effect of chemical composition of highly active supported Ziegler-Natta catalysts with controlled morphology on the MWD of PE has been studied.It was shown the variation of transition metal compound in the MgCl_2-supported catalyst affect of MWD of PE produced in broad range:Vanadium-magnesium catalyst(VMC)produce PE with broad and bimodal MWD(M_w/M_n=14-21).MWD of PE,produced over titanium-magnesium catalyst(TMC)is narrow or medium depending on Ti content in the catalyst(M_w/M_n=3.1-4.8).The oxidation ... 展开更多
关键词 Polyethylene(PE) Vanadium magnesium catalyst(VMC) Titanium magnesium catalysttmc Gel permeation chromatography(GPC) Molecular weight distribution(MWD).
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用TMC体系催化合成反式─1,4─聚异戊二烯的研究 被引量:1
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作者 贺继东 翟学英 +2 位作者 宋景社 于善普 黄宝琛 《青岛化工学院学报(自然科学版)》 1995年第4期308-313,共6页
研究了进口TMC体系用于合成反式-1,4-聚异戊二烯(TPI)的聚合活性及其动力学行为。结果表明,以三异丁基铝为助催化剂,催化剂效率(CE)随着单体浓度加大,聚合温度上升和聚合时间延长而提高。当采用溶剂→单体→Al→... 研究了进口TMC体系用于合成反式-1,4-聚异戊二烯(TPI)的聚合活性及其动力学行为。结果表明,以三异丁基铝为助催化剂,催化剂效率(CE)随着单体浓度加大,聚合温度上升和聚合时间延长而提高。当采用溶剂→单体→Al→Ti为加料顺序,以甲苯为溶剂,在Al/Ti=50(mol/mol),Tp=60℃时的最大催化剂效率可达4000~5000gTPI/gTi。初步动力学研究表明,聚合反应速率对单体浓度呈一级反应,聚合表观活化能为33kJ/mol。 展开更多
关键词 负载型 催化剂 聚异戊二烯 橡胶 金属催化剂
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