CHLOROBENZENE

作品数:52被引量:172H指数:8
导出分析报告
相关领域:理学更多>>
相关作者:李小红张瑞州张现周更多>>
相关机构:中国中化集团公司安徽八一化工股份有限公司中国石油化工集团公司河南师范大学更多>>
相关期刊:《化工学报》《Journal of Chemistry and Chemical Engineering》《Chinese Journal of Structural Chemistry》《Science Bulletin》更多>>
相关基金:国家自然科学基金国家重点基础研究发展计划中国博士后科学基金上海市教育委员会重点学科基金更多>>
-

检索结果分析

结果分析中...
条 记 录,以下是1-10
视图:
排序:
Constructing Ce-Mn/Al_(2)O_(3)with different active components for low temperature catalytic degradation of chlorobenzene in soil
《Journal of Rare Earths》2024年第10期1873-1881,共9页Tianyu Sun Mutao Xu Xuelu Meng Tiantian Liu Qijie Jin Chengzhang Zhu Haitao Xu 
Project supported by the National Key Research and Development Program of China(2021YFB3500600,2021YFB3500605,2022YFB3504100);Key R&D Program of Jiangsu Province(BE2022142);Natural Science Foundation of Jiangsu Province(BK20220365);Jiangsu International Cooperation Project(BZ2021018);Chunhui Project Foundation of the Education Department of China(202200554)。
Soil remediation containing numerous organic contaminants is of great significance to ecological environment.Herein,the synergetic effects of Ce-Mn/Al_(2)O_(3)with different active components on catalytic thermal deso...
关键词:Ce-Mn/Al_(2)O_(3) SOIL Thermal desorption Low temperature Degradation pathway Rare earths 
Influence of surface acidity and chemical valence on low temperature activity over Pt-HSiW/CeO_(2) for catalytic combustion of chlorobenzene
《Journal of Rare Earths》2024年第9期1693-1703,I0002,共12页Zhongxian Song Zepeng Liu Xuejun Zhang Yanli Mao Wei Liu Chunxiang Gao Haiyang Li Xia Zhang Changrui Han Zhenzhen Huang 
Project supported by the National Natural Science Foundation of China (21872096);Key Research and Development Project of Henan Province (231111320400);Zhongyuan Yingcai Jihua (ZYYCYU202012183);Academic Leader of Henan Institute of Urban Construction (YCJXSJSDTR202204);College Students'Innovation and Entrepreneurship Training Program of Henan Province(202211765053);Doctoral Research Start-up Project of Henan University of Urban Construction (990/Q2017011)。
Pt-HSiW/CeO_(2) catalysts were prepared for chlorobenzene(CB) catalytic combustion by hydrothermal method at different calcination temperatures,and the effects of the surface acidity and chemical valence on the cataly...
关键词:Pt-HSiW/CeO_(2) Catalytic combustion CHLOROBENZENE Acid sites Rare earths 
Catalytic degradation of chlorinated volatile organic compounds(CVOCs)over Ce-Mn-Ti composite oxide catalysts
《Journal of Environmental Sciences》2024年第4期326-338,共13页Zhiwei Zhou Qianqian Li Guijin Su Jiaxin Pang Bohua Sun Jing Meng Bin Shi 
supported by the National Key R&D Program of China(No.2020YFC1910100);the National Natural Science Foundation of China(Nos.22006156 and 21876193);the Chengdu Science and Technology Bureau(No.2018-ZM01-00019-SN);the Youth Innovation Promotion Association CAS。
Developing industrially moldable catalysts with harmonized redox performance and acidity is of great significance for the efficient disposal of chlorinated volatile organic compounds(CVOCs)in actual exhaust gasses.Her...
关键词:CHLOROBENZENE Ce_(0.02)Mn_(0-0.2)4tiox materials Redox ability ACIDITY Synergistic interaction 
Atmospheric heterogeneous reaction of chlorobenzene on mineralα-Fe_(2)O_(3)particulates:a chamber experiment study被引量:2
《Frontiers of Environmental Science & Engineering》2023年第11期169-180,共12页Meiling Chen Mengjie Yin Yuetan Su Ruizhe Li Kezhou Liu Zhongbiao Wu Xiaole Weng 
supported by the National Natural Science Foundation of China(No.22176169,52070168);the Key R&D Plan of Zhejiang Province(No.2023C03127);the Fundamental Research Funds for the Central Universities(No.226-2022-00150).
Despite the large emission of chlorinated volatile organic compounds(CVOCs)into the atmosphere,the ultimate fate of these compounds remains largely unknown.Herein,we explore the photochemical conversion of an importan...
关键词:Photochemical conversion CHLOROBENZENE α-Fe_(2)O_(3) PCDD Fs Mineral particulate 
Heterobimetallic CoCeO_(x) derived from cobalt partially-substituted Ce-UiO-66 for chlorobenzene efficient catalytic destruction被引量:2
《Journal of Rare Earths》2023年第6期810-819,I0001,共11页Lu Li Shuangshuang Fu Dan Tao Jiaxun Zhang Mingjiao Tian Jianwen Shi Mudi Ma Chi He 
Project supported by the National Natural Science Foundation of China(22106124,22276145);the Natural Science Foundation of Shaanxi Province(2021JQ-011).
Here,a metal-organic framework(MOF)-templated strategy was applied to synthesize the CoCeO_(x) bimetallic catalysts by calcining Co partially-substituted Ce-UiO-66.It is indicated that the substituted Co limited Ce ca...
关键词:Ce-UiO-66 CoCeO_(x)bimetallic oxide CHLOROBENZENE Catalytic oxidation Reaction mechanism Rare earths 
Catalytic destruction of chlorobenzene over K-OMS-2: Inhibition of high toxic byproducts via phosphate modification
《Journal of Environmental Sciences》2023年第5期844-854,共11页Yunpeng Long Jiajia Liu Meiling Chen Renna Li Xiaole Weng Zhongbiao Wu 
supported by the National Natural Science Foundation of China(Nos.21922607 and 22106133);the Outstanding Youth Project of Zhejiang Natural Science Foundation(No.LR19E080004).
In the process of catalytic destruction of chlorinated volatile organic compounds(CVOCs),the catalyst is prone to chlorine poisoning and produce polychlorinated byproducts with high toxicity and persistence,bringing g...
关键词:Catalytic destruction Chlorinated organics Phosphoric modification K-OMS-2 Secondary pollution 
Degradation of chlorobenzene by non-thermal plasma coupled with catalyst:influence of catalyst,interaction between plasma and catalyst
《Plasma Science and Technology》2023年第5期170-183,共14页石秀娟 梁文俊 尹国彬 刘佳 
supported by the National Key Research and Development Program of China(No.2018YFC1903100);Beijing Municipal Science and Technology Project Program(No.Z191100009119002);the State Environmental Protection Key Laboratory of Odor Pollution Control(No.20210504)。
Non-thermal plasma(NTP)is considered to be a promising technology for the removal of volatile organic compounds;however,its application is limited by low CO_(2) selectivity and undesirable by-products.To overcome thes...
关键词:non-thermal plasma CHLOROBENZENE CATALYSTS OZONE decomposition mechanism 
Synthesis of hierarchical porous carbon with high surface area by chemical activation of(NH_(4))_(2)C_(2)O_(4) modified hydrochar for chlorobenzene adsorption
《Journal of Environmental Sciences》2023年第4期123-137,共15页Jie Wen Zewei Liu Hongxia Xi Bichun Huang 
supported by the National Key Research and Development Program of China (No.2019YFC1805804)。
In this work,hydrothermal technique combined with KOH activation were employed to develop a series of porous carbons (NPCK-x) using tobacco stem as a low-cost carbon source and (NH_(4))_(2)C_(2)O_(4)as a novel nitroge...
关键词:Tobacco stem Hierarchical porous carbon N-containing groups Dynamic adsorption CHLOROBENZENE 
Catalytic feasibility of Ce-doped LaCoO_(3) systems for chlorobenzene oxidation:An analysis of synthesis method被引量:1
《Journal of Rare Earths》2022年第6期897-905,I0002,共10页Héctor Acosta Pérez Carlos A.López Luis E.Cadús Fabiola N.Agüero 
The financial support from Universidad Nacional de San Luis,CONICET,ANPCyT。
A family of Ce-doped LaCoO_(3) perovskites are presented as possible catalysts for Cl-VOCs elimination.These materials with different contents of Ce were obtained through the citrate and the reactive grinding methods....
关键词:Cl-VOCs Perovskites CHLOROBENZENE CERIUM COBALT Rare earths 
Simultaneous removal of NO_(x)and chlorobenzene on V_(2)O_(5)/TiO_(2)granular catalyst:Kinetic study and performance prediction被引量:4
《Frontiers of Environmental Science & Engineering》2021年第4期263-272,共10页Lina Gan Kezhi Li Hejingying Niu Yue Peng Jianjun Chen Yuandong Huang Junhua Li 
We gratefully acknowledge the National Natural Science Foundation of China(Grant Nos.21876093 and 21777081).
The synergetic abatement of multi-pollutants is one of the development trends of flue gas pollution control technology,which is still in the initial stage and facing many challenges.We developed a V_(2)O_(5)/TiO_(2)gr...
关键词:NO_(x)Chlorobenzene Simultaneous removal Kinetic study Performance prediction V_(2)O_(5)/TiO_(2) 
检索报告 对象比较 聚类工具 使用帮助 返回顶部