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首页> 外文期刊>Journal of Chemical and Engineering Data: the ACS Journal for Data >Investigation of Solid-Liquid Equilibria on the Na+//CI-, NO3-, SO42--H2O System and the Na+//NO3-, SO42--H2O System at 313.15 K
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Investigation of Solid-Liquid Equilibria on the Na+//CI-, NO3-, SO42--H2O System and the Na+//NO3-, SO42--H2O System at 313.15 K

机译:在313.15 k的Na + // Ci-,Na + // Ci-,No + // Ci-,No3-,SO42 - H2O系统和Na + // No3-,SO42 - H2O系统上的固体液体平衡研究

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摘要

Equilibria on the Na+//Cl-, NO3-, SO42--H2O system and the Na+//NO3-, SO42--H2O system at 313.15 K are investigated used the isothermal solution saturation method. The composition and physicochemical properties (refractive index n(D), viscosity eta, density rho, and pH) of saturated solutions are determined. The phase diagram of the Na+//NO3-, SO42--H2O system includes two invariant points, three invariant curves, and three crystallization fields of single salts, Na2SO4, Na2SO4.NaNO3.H2O, NaNO3. Invariant points are cosaturated with (Na2SO4 + Na2SO4 center dot NaNO3 center dot H2O) salts and (NaNO3 + Na2SO4-NaNO3-H2O) salts, respectively. The Na+//CI-, NO3-, SO42--H2O system consists of five univariant curves, two invariant points cosaturated with three salts, and four crystallized regions. Double salt Na2SO4 center dot NaNO3 center dot H2O can be verified to exist in the Na+//Cl-, NO3-, SO42--H2O and Nall/NO3-, SO42--H2O systems under equilibrium conditions at 313.15 K. In addition, comparing with reported phase diagrams in different temperatures, crystallized regions of Na2SO4NaNO3-H2O decrease with increasing temperature and disappear at 373.15 K. The crystallized region of sodium sulfate widens, while both crystallized regions of NaNO3 and NaCI decrease with increasing temperature. All of the physicochemical properties (nD, t, p, pH) of equilibrium solutions alter with a composition change of the liquid phase. Phase equilibria of Na+//Cl-, SO42-, NO3--H2O at 313.15 K were also investigated by the through and intermediate translation techniques. All data and results from our work are important to design and optimize the crystallization of high-saline wastewater in the coal chemical industry and could be used to solve inorganic salt separation from the system containing the above-mentioned salts.
机译:平衡中的Na + //氯离子,NO3-,SO42上 - H2O系统和Na +的// NO3-,SO42 - H2O体系在313.15 K的研究中使用的等温溶液饱和方法。饱和溶液的组成和物理化学性质(折射率n(d),粘度〔η,密度RHO,和pH下)被确定。中的Na + // NO3-的相图,SO42 - H2O系统包括两个不变点,三条不变曲线和单盐,硫酸钠,Na2SO4.NaNO3.H2O,硝酸钠三个结晶字段。不变点cosaturated分别与(硫酸钠+硫酸钠中心点的NaNO 3中心点H 2 O)的盐和(+硝酸钠硫酸钠-的NaNO 3-H 2 O)的盐。中的Na + // CI-,NO3-,SO42 - H2O系统由五个单变曲线,三种盐,和四个结晶区域cosaturated 2个不变点。复盐硫酸钠中心点的NaNO 3中心点H2O可以验证以Na + //氯离子存在,NO3-,SO42 - H2O和纳尔/ NO3-,SO42 - H2O平衡条件下在系统K. 313.15此外,在不同温度下的报道相图,随着温度的升高Na2SO4NaNO3-H2O减少结晶区域进行比较并在373.15 K的硫酸钠加宽了结晶化的区域消失,而硝酸钠和氯化钠降低随着温度的升高两者的结晶化区域。所有平衡解的物理化学性质(ND,T,P,pH值)的改变与该液体相的组成变化。的Na + //氯离子的相平衡,SO42-,NO3 - H2O在313.15 K含量也通过和中间转换技术的研究。所有从我们的工作数据和结果都在煤化学工业设计和优化高含盐废水的结晶重要,可用于解决从含有上述盐的系统无机盐的分离。

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    Ningxia Univ Dept Chem &

    Chem Engn State Key Lab High Efficiency Coal Utilizat &

    Gre 539 West Helanshan Rd Yinchuan 750021 Ningxia Hui Aut Peoples R China;

    Ningxia Univ Dept Chem &

    Chem Engn State Key Lab High Efficiency Coal Utilizat &

    Gre 539 West Helanshan Rd Yinchuan 750021 Ningxia Hui Aut Peoples R China;

    Ningxia Univ Dept Chem &

    Chem Engn State Key Lab High Efficiency Coal Utilizat &

    Gre 539 West Helanshan Rd Yinchuan 750021 Ningxia Hui Aut Peoples R China;

    Ningxia Univ Dept Chem &

    Chem Engn State Key Lab High Efficiency Coal Utilizat &

    Gre 539 West Helanshan Rd Yinchuan 750021 Ningxia Hui Aut Peoples R China;

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