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NH_3-CO_2-SO_4^(2-)-H_2O四元体系气液相平衡研究
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作者 卢二凯 徐卡秋 +1 位作者 曾珍 陈小康 《当代化工》 CAS 2015年第9期2066-2069,共4页
鉴于国内缺少有关NH3-CO2-SO42--H2O四元体系气液相平衡的数据及模型,采用连续流动鼓泡法测定了NH3-CO2-SO42--H2O四元体系在常压、温度为313.15~343.15 K条件下的气液平衡实验数据,并建立了相应的热力学相平衡模型。实验结果表明在NH3-... 鉴于国内缺少有关NH3-CO2-SO42--H2O四元体系气液相平衡的数据及模型,采用连续流动鼓泡法测定了NH3-CO2-SO42--H2O四元体系在常压、温度为313.15~343.15 K条件下的气液平衡实验数据,并建立了相应的热力学相平衡模型。实验结果表明在NH3-CO2-H2O三元体系中引入SO42-后,气相NH3平衡分压降低,CO2平衡分压升高。模型采用改进的Davies方程及Henry定律进行计算,用Matlab中的fsolve函数进行编辑求解。模型简洁,计算方便,计算结果与实验数据能够较好地吻合,为涉及NH3-CO2-SO42--H2O四元体系的工艺过程研究提供了相应的参考数据和理论依据。 展开更多
关键词 NH3-Co2-so42--h2o四元体系 气液相平衡 热力学模型
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Formation of Li Salts from Natural Brines during Isothermal Evaporation at 25℃
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作者 SONG Peng-sheng DONG Ya-ping LI Wu 《盐湖研究》 CSCD 2019年第2期1-10,共10页
Li brines are the primary resources for Li salt industries.Evaporation is necessary to concentrate Li due to its low level of concentration in raw brines.The salt sequences during the evaporation of Li brines,especial... Li brines are the primary resources for Li salt industries.Evaporation is necessary to concentrate Li due to its low level of concentration in raw brines.The salt sequences during the evaporation of Li brines,especially the behavior of Li salts,represent key data for solar technologies.However,chemists cannot use any phase diagram to estimate Li salt sequences during evaporation at 25℃.The thermodynamic model proposed by us in 2003 represents the only tool for the prediction of equilibrium conditions during the evaporation of solutions containing Li^+,Na^+,K^+,Mg^2+/Cl^-,SO4^2-,and-H2O components at 25℃.In this paper,the predicted salt sequences of 20 brines are reported.The results indicate that (1) the first crystallized Li salt during evaporation of Li brine varies in brine composition;(2) lithium sulfate is crystallized in many cases initially for brines of magnesium sulfate subtype,while Db4 (Li2SO4 ·K2SO4 ) or Db3 (2Li2SO4 ·Na2SO4 ·K2SO4 ) appears first for sodium sulfate and magnesium sulfate subtypes with lower Mg/Li composition,and the final eutectic point is H+LiC+Lc+Ls+Car;(3) the final eutectic point is H+LiC+Lc+Car for brines of chloride type;and (4) Li content corresponding to the first crystallized Li salt is in the range of 0.43%-1%.These findings enhance our knowledge of Li chemistry and provide insights into solar pond technology of the Li-brine process. 展开更多
关键词 Li-brine Forrmation of LI SALTS Isothermal evaporation of BRINE Salt sequences from BRINE Thermodynamic model for Li^+ Na^+ K^+ Mg^2+/Cl^- So4^2--h2o system
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ON THE FORMATIVE CONDITIONS OF POLYHALITE IN THE SIX-COMPONENT SYSTEM K^+,Na^+,Mg^(2+),Ca^(2+)/Cl^-,SO_4~2-H_2O 被引量:4
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作者 韩蔚田 谷树起 蔡克勤 《Chinese Science Bulletin》 SCIE EI CAS 1982年第12期1319-1324,共6页
Polyhalite (K2SO4·MgSO4·2CaSO4·2H2O) is one of the widely distributed potash minerals. It is found in nearly all potash deposits of the sulphate type in Sichuan, Hubei and Shandong provinces. The stud... Polyhalite (K2SO4·MgSO4·2CaSO4·2H2O) is one of the widely distributed potash minerals. It is found in nearly all potash deposits of the sulphate type in Sichuan, Hubei and Shandong provinces. The study on the formative conditions of polyhalite and the interrelation between polyhalite and soluble potash minerals becomes important for the present mineral exploration. 展开更多
关键词 FoRMATIVE Shandong HUBEI Ca Cl Mg Na so42-h2o magnesium minerals
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