ETHYLBENZENE

作品数:83被引量:214H指数:7
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相关领域:理学化学工程更多>>
相关作者:张斌孙洪敏王振东杨为民更多>>
相关机构:中国石油化工集团公司延边大学仁荷大学更多>>
相关期刊:《Journal of Rare Earths》《Journal of Energy Chemistry》《合成化学》《China Medical Abstracts(Internal Medicine)》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福建省自然科学基金更多>>
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CO_(2)-promoted ethylbenzene dehydrogenation catalyzed by zeolite-encaged single chromium sites
《Chinese Journal of Catalysis》2025年第4期158-168,共11页Jian Dang Xin Deng Weijie Li Di Yang Guangjun Wu Landong Li 
国家自然科学基金(U22B6011,22025203);中国博士后科学基金(2023M731797);中央高校优秀青年团队项目(南开大学).
The selective activation of C-H bonds is pivotal in catalysis for converting hydrocarbons into value-added chemicals.Ethylbenzene dehydrogenation to styrene is crucial process to produce polystyrene and its derivative...
关键词:C-H bond activation CO_(2)-promoted ethylbenzene DEHYDROGENATION K-Cr@Y O=Cr(VI)=O Cr(IV)=O 
Styrene and ethylbenzene exposure and type 2 diabetes mellitus:A longitudinal gene-environment interaction study
《Eco-Environment & Health》2024年第4期452-457,共6页Linling Yu Wei Liu Yongfang Zhang Qiyou Tan Jiahao Song Lieyang Fan Xiaojie You Min Zhou Bin Wang Weihong Chen 
supported by National Natural Science Foundation of China (82241088,82203996).
Styrene and ethylbenzene(S/EB)are identified as hazardous air contaminants that raise significant concerns.The association between S/EB exposure and the incidence of type 2 diabetes mellitus(T2DM),and the interaction ...
关键词:STYRENE ETHYLBENZENE Type 2diabetes mellitus Genetic risk score Gene-environment interaction 
Pd Pt VO_(x)/CeO_(2)-ZrO_(2):Highly efficient catalysts with good sulfur dioxide-poisoning reversibility for the oxidative removal of ethylbenzene
《Journal of Environmental Sciences》2024年第4期153-166,共14页Jia Wang Yuxi Liu Jiguang Deng Lin Jing Xiuqing Hao Xing Zhang Xiaohui Yu Hongxing Dai 
supported by the National Natural Science Foundation Committee of China-Liaoning Provincial People’s Government Joint Fund(No.U1908204);the National Natural Science Foundation of China(21976009);the National Key R&D Program of China(Nos.2022YFB3506200 and 2022YFB3504100);the Beijing Natural Science Foundation(J210006);the R&D Program of Beijing Municipal Education Commisson(No.KZ202210005011)。
The PdPtVO_(x)/CeO_(2)-ZrO_(2)(PdPtVO_(x)/CZO)catalysts were obtained by using different approaches,and their physical and chemical properties were determined by various techniques.Catalytic activities of these materi...
关键词:CERIA-ZIRCONIA Supported palladium-platinum-vanadium catalyst Volatile organic compound Ethylbenzene oxidation Sulfur dioxide resistance 
Synthesis of spherical nano-ZSM-5 zeolite with intergranular mesoporous for alkylation of ethylbenzene with ethanol to produce m-diethylbenzene
《Chinese Journal of Chemical Engineering》2024年第3期298-309,共12页Siyue Wang Jinhong Li Qingxin Xu Shengjie Song Yu'ni Jiang Lidong Chen Xin Shi Weiguo Cheng 
Research support is from the Service Local Project of the Education Department of Liaoning Province(LJKMZ22021404,LF2019002 and LJKMZ22021423);the“Transformational Technologies for Clean Energy and Demonstration”,Strategic Priority Research Program of the Chinese Academy of Sciences,(XDA 21030500).
Catalytic synthesis of m-diethylbenzene(m-DEB)through alkylation of ethylbenzene(EB)may be a promising alternative route in comparison with traditional rectification of mixed DEB,for which the top priority is to devel...
关键词:Zeolite Modification Alkylation reaction m-diethylbenzene Catalyst FIXED-BED 
Sn-decorated CeO_(2) with different morphologies for direct dehydrogenation of ethylbenzene被引量:1
《Journal of Rare Earths》2024年第1期102-109,I0004,共9页Kai Zhang Guoju Cui Mengzhen Yuan Huiwen Huang Ning Li Jiale Xu Guowei Wang Chunyi Li 
Project supported by the National Natural Science Foundation of China(22178390);the Fundamental Research Funds for the Central Universities(18CX02016A)。
Three Sn-decorated ceria catalysts with various morphologies(rods,particles,and cubes)were prepared and applied to the direct dehydrogenation of ethylbenzene.Multi-technology characterizations,including X-ray photoele...
关键词:Ethylbenzene dehydrogenation CeO_(2) SN MORPHOLOGY Oxygen vacancy Rare earths 
Study of ground ozone and precursors along with particulate matter at residential sites in the vicinity of power plant
《Waste Disposal and Sustainable Energy》2023年第4期535-549,共15页Asha B.Chelani Rahul Vyawahare Sneha Gautam 
Emission source characterization and meteorological influence are the key aspects to gain insight into the ground ozone governing mechanisms.Receptor-based data analysis techniques help in comprehending local ozone fl...
关键词:Ground ozone Particulate matter Benzene ethylbenzene toluene and xylene(BTEX) Power plant Hazard quotient Random forest model 
Insights into carbon-based materials for catalytic dehydrogenation of low-carbon alkanes and ethylbenzene
《Frontiers of Chemical Science and Engineering》2023年第11期1623-1648,共26页Sijia Xing Sixiang Zhai Lei Chen Huabin Yang Zhong-Yong Yuan 
the National Natural Science Foundation of China(Grant Nos.22179065,22111530112).
Direct dehydrogenation with high selectivity and oxidative dehydrogenation with low thermal limit has been regarded as promising methods to solve the increasing demands of light olefins and styrene.Metalbased catalyst...
关键词:carbon materials DEHYDROGENATION active sites MECHANISM catalytic performance SUPPORT 
An efficient nanodiamond-based monolithic foam catalyst prepared by a facile thermal impregnation strategy for direct dehydrogenation of ethylbenzene to styrene
《Chinese Chemical Letters》2023年第5期332-336,共5页Guifang Ge Xiaojing Wei Hongchen Guo Zhongkui Zhao 
financially supported by the National Natural Science Foundation of China(No.21676046);the Chinese Ministry of Education via the Program for New Century Excellent Talents in Universities(No.NCET-12-0079)。
Nanodiamond(ND)has long been recognized as an effective carbocatalyst for synthesizing styrene via direct dehydrogenation(DDH).However,the induced drastic pressure drop of its powder form limits its industrial applica...
关键词:Nanodiamond-based monolithic foam Heterogeneous catalysis Thermal impregnation Ethylbenzene direct dehydrogenation Styrene production 
Potassium-promoted single-atom Co-N-C catalyst for direct dehydrogenation of ethylbenzene被引量:1
《Nano Research》2023年第3期3687-3694,共8页Jiajia Shi Yao Wei Leilei Zhang Dan Zhou Zhounan Yu Shengxin Zhang Xiaofeng Yang Ji Yang Yang Su Zheng Jiang Aiqin Wang 
supported by the National Natural Science Foundation of China(Nos.22132006,21878289,and 22172159);CAS Project for Young Scientists in Basic Research(No.YSBR-022);the Youth Innovation Promotion Association CAS(No.2018216).
Alkali metals have been widely used as promoters of metal catalysts in various applications,yet the atomic understanding of the promotional mechanism remains elusive.In this work,we for the first time report the signi...
关键词:alkali metal POTASSIUM promoter alkane dehydrogenation single-atom catalyst Co-N-C 
Fully-exposed Pt clusters stabilized on Sn-decorated nanodiamond/graphene hybrid support for efficient ethylbenzene direct dehydrogenation被引量:2
《Nano Research》2022年第12期10029-10036,共8页Linlin Wang Xuetao Qin Ting Sun Xiangbin Cai Mi Peng Zhimin Jia Xiaowen Chen Ning Wang Jiangyong Diao Hongyang Liu Ding Ma 
supported by the National Key Research and Development Program of China(No.2021YFA1502802);the National Natural Science Foundation of China(Nos.21961160722,92145301,U21B2092,22072162,and 91845201);the Liaoning Revitalization Talents Program(No.XLYC1907055);Natural Science Foundation of Liaoning Province(No.2021-MS001);IMR Innovation Fund(No.2022-PY05);Dalian National Lab for Clean Energy(No.DNL Cooperation Fund 202001);the Sinopec China.N.W.hereby acknowledges the funding support from the Research Grants Council of Hong Kong(Nos.C6021-14E,N_HKUST624/19,and 16306818);The XAS experiments were conducted in Shanghai Synchrotron Radiation Facility(SSRF)。
The pursuit of energy conservation and environmental protection has always been a hot topic in the catalytic fields,which is inseparable from the rational designing of efficient catalysts and an in-depth understanding...
关键词:Pt cluster ethylbenzene dehydrogenation fully-exposed catalyst heterogeneous catalysis 
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