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首页> 外文期刊>Fluid Phase Equilibria >Measurement and correlation of solubilities of C.I. Disperse Red 73, C.I. Disperse Yellow 119 and their mixture in supercritical carbon dioxide
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Measurement and correlation of solubilities of C.I. Disperse Red 73, C.I. Disperse Yellow 119 and their mixture in supercritical carbon dioxide

机译:C.I.溶解度的测量和相关分散红73,C.I.将黄119及其混合物分散在超临界二氧化碳中

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摘要

The solubilities of disperse dyes and their mixture in supercritical carbon dioxide are important to the fundamental research and development of supercritical fluid dyeing (SFD). The solubilities of Disperse Red 73, Disperse Yellow 119 and their mixture in supercritical carbon dioxide were measured in the temperature range from 343 to 383 K and pressures from 12 to 28 MPa by a static-recirculation method. The results show that over the entire range of experimental conditions in the binary (Disperse Red 73 + CO_2 and Disperse Yellow 119 + CO_2) and ternary (Disperse Red 73 +Disperse Yellow 119 + CO_2) systems, the solubilities increased with increasing pressure and temperature and were clearly affected by the molecular polarity of the dyes. A co-solvent effect and a competing dissolution effect existing in the ternary system led to the increase and decrease in the solubilities of Disperse Yellow 119 and Disperse Red 73,respectively. The solubility data of the two dyes and their mixture were correlated with two empirical models-the Chrastil and the Mendez-Santiago/Teja (MT) model.
机译:分散染料及其混合物在超临界二氧化碳中的溶解度对超临界流体染色(SFD)的基础研究和开发很重要。通过静态循环法,在343至383 K的温度范围和12至28 MPa的压力下测量了分散红73,分散黄119及其混合物在超临界二氧化碳中的溶解度。结果表明,在二元(分散红73 + CO_2和分散黄119 + CO_2)和三元(分散红73 +分散黄119 + CO_2)系统的整个实验条件范围内,溶解度随压力和温度的升高而增加。并明显受染料分子极性的影响。三元体系中存在的助溶剂效应和竞争性溶解效应分别导致分散黄119和分散红73的溶解度增加和降低。两种染料及其混合物的溶解度数据与两个经验模型(Chrastil和Mendez-Santiago / Teja(MT)模型)相关。

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