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(Solid plus Liquid) Phase Equilibria in the Quaternary System (NaBr + MgBr2 + CaBr2 + H2O) at 298.15 K
Cui, Rui-Zhi; Sang, Shi-Hua; Li, Wu; Dong, Ya-Ping
2018-09
发表期刊JOURNAL OF CHEMICAL AND ENGINEERING DATA
ISSN0021-9568
卷号63期号:9页码:3400-3407
摘要The solubilities of salts in the (NaBr + MgBr2 + CaBr2 + H2O) system and its two ternary subsystems (NaBr + MgBr2 + H2O) and (NaBr + CaBr2 + H2O) are investigated at 298.15 K by the isothermal dissolution equilibrium method. The equilibrium phase diagrams of the three systems were obtained using the experimental results. In the three systems, neither solid solution nor double salt was found. In the two ternary phase diagrams, there are two invariant points, three dissolution equilibrium curves and three crystallization fields. The equilibrium solid phases in the (NaBr + MgBr2 + H2O) system are NaBr, NaBr center dot 2H(2)O and MgBr2 center dot 6H(2)O, and those in the (NaBr + CaBr2 + H2O) system are NaBr, NaBr center dot 2H(2)O and CaBr2 center dot 6H(2)O. The phase diagram of the quaternary system at 298.15 K consists of one invariant point, four solubility curves and four regions (corresponding to NaBr, NaBr-2H(2)O, MgBr2 center dot 6H(2)O, and CaBr2 center dot 6H(2)O). The solubilities of salts in the quaternary system and its two subsystems were calculated at 298.15 K by Pizter equation. The predicted results are in agreement with the experimental results.
DOI10.1021/acs.jced.8b00291
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文献类型期刊论文
条目标识符http://ir.isl.ac.cn/handle/363002/34449
专题盐湖资源综合利用工程技术中心
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Cui, Rui-Zhi,Sang, Shi-Hua,Li, Wu,et al. (Solid plus Liquid) Phase Equilibria in the Quaternary System (NaBr + MgBr2 + CaBr2 + H2O) at 298.15 K[J]. JOURNAL OF CHEMICAL AND ENGINEERING DATA,2018,63(9):3400-3407.
APA Cui, Rui-Zhi,Sang, Shi-Hua,Li, Wu,&Dong, Ya-Ping.(2018).(Solid plus Liquid) Phase Equilibria in the Quaternary System (NaBr + MgBr2 + CaBr2 + H2O) at 298.15 K.JOURNAL OF CHEMICAL AND ENGINEERING DATA,63(9),3400-3407.
MLA Cui, Rui-Zhi,et al."(Solid plus Liquid) Phase Equilibria in the Quaternary System (NaBr + MgBr2 + CaBr2 + H2O) at 298.15 K".JOURNAL OF CHEMICAL AND ENGINEERING DATA 63.9(2018):3400-3407.
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