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二氧化锰催化分解室内空气中甲醛的研究 被引量:8
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作者 曾小珊 单传家 +2 位作者 孙铭第 何陶宏 荣少鹏 《化学进展》 SCIE CAS CSCD 北大核心 2021年第12期2245-2258,共14页
甲醛作为室内空气中的主要污染物,具有来源广泛、释放周期长和致癌等特点。二氧化锰因其较高的低温催化活性和低毒廉价优势,被应用于甲醛的催化分解。本文从二氧化锰负载贵金属、二氧化锰结构调控、二氧化锰与其他非贵金属材料复合三方... 甲醛作为室内空气中的主要污染物,具有来源广泛、释放周期长和致癌等特点。二氧化锰因其较高的低温催化活性和低毒廉价优势,被应用于甲醛的催化分解。本文从二氧化锰负载贵金属、二氧化锰结构调控、二氧化锰与其他非贵金属材料复合三方面,综述了二氧化锰催化分解甲醛的研究进展,探讨分析了负载贵金属、晶型与形貌、层间/隧道内阳离子、表面缺陷、原子掺杂以及与其他材料复合等结构调控策略对二氧化锰催化分解甲醛性能的影响,并总结了贵金属与非贵金属催化分解甲醛机理的区别。最后,分析了现阶段室内甲醛净化面临的问题和挑战,展望了二氧化锰催化分解甲醛的主要研究方向和发展趋势。 展开更多
关键词 二氧化锰 甲醛 室内空气 催化分解
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Graphene enhancedα-MnO_(2) for photothermal catalytic decomposition of carcinogen formaldehyde 被引量:2
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作者 Xiaoshan Zeng Chuanjia Shan +2 位作者 mingdi sun Danni Ding Shaopeng Rong 《Chinese Chemical Letters》 SCIE CAS CSCD 2022年第11期4771-4775,共5页
Formaldehyde(HCHO)causes increasing concerns due to its ubiquitously found in indoor air and being irritative and carcinogenic to humans.Photothermal-catalysis developed in recent years has been considered as a signif... Formaldehyde(HCHO)causes increasing concerns due to its ubiquitously found in indoor air and being irritative and carcinogenic to humans.Photothermal-catalysis developed in recent years has been considered as a significant strategy for enhancing catalytic activity.Manganese oxides,compared with its strong thermocatalytic activity,generally suffer from much lower photocatalytic activity make its photochemical properties less concerned.Herein,α-MnO_(2)nanowires were composited with the graphene oxide(GO)via mechanical grinding and co-precipitating method,respectively.α-MnO_(2)/GO nanohybrids prepared by co-precipitating method exhibits excellent activity,achieving 100%decomposition of HCHO with the solar-light irradiation at ambient temperature.It is found that,besides the photo-driven thermocatalysis,the photocatalysis mechanism made a major contribution to the decomposition of HCHO.The incorporation of GO,on the one hand,is beneficial to improve the optical absorption capacity and photothermal conversion efficiency;on the other hand,is conductive to electron transfer and effective separation of electrons and holes.These synergistic effects significantly improve the catalytic activity ofα-MnO_(2)/GO nanohybrids.This work proposes a new approach for the utilization of solar energy by combining manganese oxides,and also develops an efficient photothermal-catalyst to control HCHO pollution in indoor air. 展开更多
关键词 α-MnO_(2) Photothermal catalytic Graphene oxide FORMALDEHYDE
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