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Strong metal-support interaction (SMSI) in environmental catalysis: Mechanisms, application, regulation strategies, and breakthroughs
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作者 Fuyuan Qi Jianfei Peng +4 位作者 Zilu Liang jiliang guo Jiayuan Liu Tiange Fang Hongjun Mao 《Environmental Science and Ecotechnology》 SCIE 2024年第6期7-24,共18页
The strong metal-support interaction(SMSI)in supported catalysts plays a dominant role in catalytic degradation,upgrading,and remanufacturing of environmental pollutants.Previous studies have shown that SMSI is crucia... The strong metal-support interaction(SMSI)in supported catalysts plays a dominant role in catalytic degradation,upgrading,and remanufacturing of environmental pollutants.Previous studies have shown that SMSI is crucial in supported catalysts'activity and stability.However,for redox reactions catalyzed in environmental catalysis,the enhancement mechanism of SMSI-induced oxygen vacancy and electron transfer needs to be clarified.Additionally,the precise control of SMSI interface sites remains to be fully understood.Here we provide a systematic review of SMSI's catalytic mechanisms and control strategies in purifying gaseous pollutants,treating organic wastewater,and valorizing biomass solid waste.We explore the adsorption and activation mechanisms of SMSI in redox reactions by examining interfacial electron transfer,interfacial oxygen vacancy,and interfacial acidic sites.Furthermore,we develop a precise regulation strategy of SMSI from systematical perspectives of interface effect,crystal facet effect,size effect,guest ion doping,and modification effect.Importantly,we point out the drawbacks and breakthrough directions for SMSI regulation in environmental catalysis,including partial encapsulation strategy,size optimization strategy,interface oxygen vacancy strategy,and multi-component strategy.This review article provides the potential applications of SMSI and offers guidance for its controlled regulation in environmental catalysis. 展开更多
关键词 Environmental catalysis Metal oxide supported catalysts Strong metal-support interaction(SMSI) Interfacial site regulation Electron transfer
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机动车尾气二次有机气溶胶生成研究 被引量:1
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作者 国纪良 彭剑飞 +3 位作者 宋爱楠 张进生 杜卓菲 毛洪钧 《化学进展》 SCIE CAS CSCD 北大核心 2023年第1期177-188,共12页
二次有机气溶胶(SOA)是大气细颗粒物(PM2.5)的重要组分,对大气能见度、公众健康以及区域或全球气候变化具有重要影响。在城市地区,机动车尾气排放的气态前体物在大气中氧化产生高浓度SOA,是城市空气质量下降的重要因素。本文综述了近些... 二次有机气溶胶(SOA)是大气细颗粒物(PM2.5)的重要组分,对大气能见度、公众健康以及区域或全球气候变化具有重要影响。在城市地区,机动车尾气排放的气态前体物在大气中氧化产生高浓度SOA,是城市空气质量下降的重要因素。本文综述了近些年机动车尾气SOA生成的相关研究成果,重点关注关键前体物的识别与排放表征、SOA生成特征、演化过程与影响因素,对比了不同研究得到的机动车SOA生成因子的差异,并提出新测量技术、新反应机制和新参数化方案将是未来研究重点关注的方向。 展开更多
关键词 机动车尾气 二次有机气溶胶 半/ 中等挥发性有机物 老化过程 影响因素
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