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作品数:206被引量:254H指数:7
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相关机构:济南智焓节能环保科技有限公司西安交通大学国家建筑材料测试中心东南大学更多>>
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Design and optimization of steam power systems in industrial parks based on the distributed steam turbine system
《Chinese Journal of Chemical Engineering》2025年第1期259-272,共14页Lingwei Zhang Ziyuan Cui Yufei Wang 
Financial support from the National Natural Science Foundation of China under Grant(22393954 and 22078358)is gratefully acknowledged.
Steam power systems(SPSs)in industrial parks are the typical utility systems for heat and electricity supply.In SPSs,electricity is generated by steam turbines,and steam is generally produced and supplied at multiple ...
关键词:Industrial parks Steam power systems Distributed steam turbine system Mixed-integer nonlinear programming OPTIMIZATION ENTHALPY 
Design of a graphene oxide@melamine foam/polyaniline@erythritol composite phase change material for thermal energy storage被引量:1
《Chinese Journal of Chemical Engineering》2023年第6期282-290,共9页Jianhui Zhou Xin Lai Jianfeng Hu Haijie Qi Shan Liu Zhengguo Zhang 
supported by the State Key Laboratory of Advanced Power Transmission Technology(GEIRI-SKL-2021-014)。
At present,only a single modification method is adopted to improve the shortcomings of erythritol(ET)as a phase change material(PCM).Compared with a single modification method,the synergistic effect of multiple modifi...
关键词:Composites ENTHALPY Heat conduction NUCLEATION Phase change 
Efficient SO_(2)removal using aqueous ionic liquid at low partial pressure
《Chinese Journal of Chemical Engineering》2023年第6期355-363,共9页Yutong Jiang Yifeng Chen Fuliu Yang Jixue Fan Jun Li Zhuhong Yang Xiaoyan Ji 
the National Natural Science Foundation of China(22108115,21776123);China Postdoctoral Science Foundation funded project(2021 M691554);Kempe foundation(SMK21-0020)in Sweden。
The development of novel absorbents is essential for SO_(2)removal.In this study,a novel ionic liquid(IL,[BHEP][HSO_(4)])was prepared,and water was selected as the co-solvent.The density and viscosity of aqueous[BHEP]...
关键词:Ionic liquids Sulfur dioxide Absorption capacity Desorption enthalpy 
Enthalpy of phase transition of isonicotinic acid
《Chinese Journal of Chemical Engineering》2017年第7期971-975,共5页Dongfang Zhao Guanghui Liu Jian Sun Lisheng Wang 
In this work, the group contribution method of Chickos et al. was applied to estimate the fusion enthalpy of isonicotinic acid, and the obtained result(29.2 k J·mol^(-1)) showed a large difference with the value(135 ...
关键词:lsonicotinic acid Enthalpy of fusion Group contribution method Enthalpy of sublimation Py-GC/MS 
Liquid-holdup regions research of novel reactive distillation column for C5 fraction separation被引量:3
《Chinese Journal of Chemical Engineering》2017年第4期433-441,共9页Liang Guo Tiefeng Wang Dongfeng Li Jinfu Wang 
Recent advances in technologies of reactive distillation(RD) offer various design concepts for chemical processes.For separation of cracking C5 fraction, one of the main challenges is improving the conversion of cyclo...
关键词:distillation residence Aspen verified cracking requirement challenges selectivity hence enthalpy 
Vapor Pressure, Vaporization Enthalpy, Standard Enthalpy of Formation and Standard Entropy of n-Butyl Carbamate被引量:1
《Chinese Journal of Chemical Engineering》2014年第10期1145-1152,共8页曾作祥 杨志红 薛为岚 李晓楠 
The vapor pressures of n-butyl carbamate were measured in the temperature range from 372.37 K to 479.27 K and fitted with Antoine equation. The compressibility factor of the vapor was calculated with the Virial equati...
关键词:N-BUTYL CARBAMATE Vapor pressure STANDARD ENTHALPY of FORMATION STANDARD ENTROPY 
Enthalpy and Heat Capacity Data for 1,2-Cyclohexanediol被引量:1
《Chinese Journal of Chemical Engineering》2003年第5期598-600,共3页周彩荣 章亚东 蒋登高 
Natural Science Foundation of Henan Province(No.0211020800)
The thermodynamic properties of different geometric structures of 1,2-cyclohexanediol which were rarely reported in literature, such as combustion enthalpy, formation enthalpy, melting enthalpy and heat ca-pacities, w...
关键词:1 2-CYCLOHEXANEDIOL melting point melting enthalpy heat capacity combustion enthalpy formation enthalpy 
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