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可见光光催化材料应用于照明灯具的环境净化性能研究 被引量:2
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作者 陈美玲 丁文超 +2 位作者 韦晓珊 杨子键 朱奕光 《中国新技术新产品》 2022年第15期30-32,共3页
全球工业的快速发展导致了严重的空气环境污染问题。为了缓解这一问题,研究人员正在开发简单高效的环境净化技术。其中,光催化作为环境保护的关键方案已经获得了广泛的关注。为了提高空间净化效率,该研究将可见光光催化材料直接涂覆于... 全球工业的快速发展导致了严重的空气环境污染问题。为了缓解这一问题,研究人员正在开发简单高效的环境净化技术。其中,光催化作为环境保护的关键方案已经获得了广泛的关注。为了提高空间净化效率,该研究将可见光光催化材料直接涂覆于照明灯具表面,制备了消毒杀菌空气净化灯具产品。随后,测试了光催化材料本身的光催化性能,探究了该灯具的空间空气净化性能。结果表明,该灯具对H1N1流感病毒空间去除率达98.85%,抗菌率高于99%,甲醛去除率达86.1%,氨气和硫化氢去除率分别高达85.1%和84.2%。可持续释放有助于提高人体免疫力的负氧离子。这种可见光光催化照明灯具可广泛应用于家居、教室、办公、医院以及商超等场景的应用。 展开更多
关键词 可见光光催化材料 抗菌 抗病毒 除甲醛 照明灯具
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In-situ route for the graphitized carbon/TiO composite photocatalysts with enhanced removal efficiency to emerging phenolic pollutants 被引量:3
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作者 Yunqing Liu Peiyu Xia +4 位作者 Lingyu Li Xinyue Wang Jiaqi Meng Yuxin Yang Yihang Guo 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2020年第9期1378-1392,共15页
TiO2 is the most photoactive material because of its superstrong photooxidizing ability,and TiO2 photocatalysis has been widely applied in sustainable water treatment and environmental remediation.However,poor sunligh... TiO2 is the most photoactive material because of its superstrong photooxidizing ability,and TiO2 photocatalysis has been widely applied in sustainable water treatment and environmental remediation.However,poor sunlight or visible-light harvesting efficiency and fast recombination rate of the photogenerated charge carriers severely limit the practical applications of TiO2.To overcome these problems,the present work demonstrates a facile in-situ co-condensation method combined with hydrothermal treatment to prepare a series of graphitized carbon/TiO2 composite photocatalysts,and anatase TiO2 phase andp-p-conjugated polycyclic aromatic carbon structure are created simultaneously.As-prepared TiO2/C composites exhibit remarkably high visible-light photocatalytic activity in the degradation of aqueous emerging phenolic pollutants,acetaminophen(APAP)and methylparaben(MPB),and apparent rate constant of the TiO2/C composite with carbon doping level of 10.3%for APAP and MPB removal is 7.6 and 2.8 times higher than that of bare TiO2,and 6.2 and 2.6 times higher than that of Degussa P25 TiO2.Based on the results of photoelectrochemical experiments,indirect chemical probe measurements,and ESR spectroscopy,it is verified that doping TiO2 with graphitized carbon is responsible for this enhanced photocatalytic activity,which renders the improved visible-light harvesting ability,the accelerated separation of the photogenerated charge carriers,and enlarged BET surface areas.Through analyzing the intermediates yielded in the photodegradation process,the pathway of visible-light photocatalytic degradation of APAP and MPB over the TiO2/C composite is proposed. 展开更多
关键词 Titanium dioxide CARBON Visible-light photocatalysis COMPOSITE Phenolic compound Water treatment
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Photocatalysis with visible-light-active uranyl complexes 被引量:3
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作者 LI Yong SU Jing +2 位作者 MITCHELL Ellen ZHANG GuoQing LI Jun 《Science China Chemistry》 SCIE EI CAS 2013年第12期1671-1681,共11页
Atomic energy is an important part of current energy resources.Production of nuclear weapons and applications of nuclear fuels in nuclear power plants have accumulated numerous spent fuels containing238U compounds,whi... Atomic energy is an important part of current energy resources.Production of nuclear weapons and applications of nuclear fuels in nuclear power plants have accumulated numerous spent fuels containing238U compounds,which are critical nuclear materials.How to reduce the nuclear wastes and to make use of the spent uranium are key scientific issues of environmental and nuclear science.We have reviewed here the physiochemical properties and photocatalytic mechanisms of homogeneous and heterogeneous uranium-containing materials.The current research efforts demonstrate that spent fuels can become promising new photocatalytic materials. 展开更多
关键词 visible-light photocatalysis actinide oxygen-centered radical excited states
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Nanostructured CdS for efficient photocatalytic H2 evolution: A review 被引量:23
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作者 Rongchen Shen Doudou Ren +4 位作者 Yingna Ding Yatong Guan Yun Hau Ng Peng Zhang Xin Li 《Science China Materials》 SCIE EI CSCD 2020年第11期2153-2188,共36页
Cadmium sulfide(Cd S)-based photocatalysts have attracted extensive attention owing to their strong visible light absorption,suitable band energy levels,and excellent electronic charge transportation properties.This r... Cadmium sulfide(Cd S)-based photocatalysts have attracted extensive attention owing to their strong visible light absorption,suitable band energy levels,and excellent electronic charge transportation properties.This review focuses on the recent progress related to the design,modification,and construction of Cd S-based photocatalysts with excellent photocatalytic H2 evolution performances.First,the basic concepts and mechanisms of photocatalytic H2 evolution are briefly introduced.Thereafter,the fundamental properties,important advancements,and bottlenecks of Cd S in photocatalytic H2 generation are presented in detail to provide an overview of the potential of this material.Subsequently,various modification strategies adopted for Cd S-based photocatalysts to yield solar H2 are discussed,among which the effective approaches aim at generating more charge carriers,promoting efficient charge separation,boosting interfacial charge transfer,accelerating charge utilization,and suppressing charge-induced self-photocorrosion.The critical factors governing the performance of the photocatalyst and the feasibility of each modification strategy toward shaping future research directions are comprehensively discussed with examples.Finally,the prospects and challenges encountered in developing nanostructured Cd S and Cd S-based nanocomposites in photocatalytic H2 evolution are presented. 展开更多
关键词 solar fuel nanostructured cadmium sulfide-based photocatalysts modification strategies hydrogen production photocharge utilization
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