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分散红73和分散蓝183及其混合物在超临界二氧化碳中溶解度的测定与关联(英文)  
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【英文篇名】 Measurement and Correlation of Solubilities of C.I. Disperse Red 73,C.I. Disperse Blue 183 and Their Mixture in Supercritical Carbon Dioxide
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【作者】 郑金花; 徐明仙; 鲁雪燕; 林春绵;
【英文作者】 ZHENG Jinhua 1; XU Mingxian 2; LU Xueyan1 and LIN Chunmian 1; 1College of Biological and Environmental Engineering; Zhejiang University of Technology; Hangzhou 310014; China 2Department of Chemical Engineering; Hangzhou Vocational Technical College; Hangzhou 310018; China;
【作者单位】 College of Biological and Environmental Engineering; Zhejiang University of Technology; Department of Chemical Engineering; Hangzhou Vocational Technical College;
【文献出处】 Chinese Journal of Chemical Engineering , 中国化学工程学报(英文版), 编辑部邮箱 2010年 04期  
期刊荣誉:ASPT来源刊  CJFD收录刊
【英文关键词】 supercritical CO2; solubility; Disperse Red 73; Disperse Blue 183;
【摘要】 The solubility of disperse dyes and their mixture in supercritical carbon dioxide is an important property in study and development of supercritical fluid dyeing technology.In this study,solubilities of C.I.Disperse Red 73,C.I.Disperse Blue 183 and their mixture in supercritical CO2 are measured at temperatures from 343.2 to 383.2 K and pressures from 12 to 28 MPa with a static recirculation method.Under the experimental conditions for the binary(C.I.Disperse Red 73+CO2 or C.I.Disperse Blue 183+CO2) and ter...
【英文摘要】 The solubility of disperse dyes and their mixture in supercritical carbon dioxide is an important property in study and development of supercritical fluid dyeing technology.In this study,solubilities of C.I.Disperse Red 73,C.I.Disperse Blue 183 and their mixture in supercritical CO2 are measured at temperatures from 343.2 to 383.2 K and pressures from 12 to 28 MPa with a static recirculation method.Under the experimental conditions for the binary(C.I.Disperse Red 73+CO2 or C.I.Disperse Blue 183+CO2) and ter...
【基金】 Supported by the Natural Science Foundation of Zhejiang Province(M203035)
【更新日期】 2010-09-29
【分类号】 TQ610
【正文快照】 1 INTRODUCTION Nowadays,water pollution control and water en- vironment protection have become a global topic. Traditional dyeing process consumes large volumes of water and consequently discharges lot of waste water, which contains many organic pollutant

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