Dewen Zeng
Professional Title:Professor
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[1]Dongdong Li*, Dewen Zeng*, Xia Yin, Dandan Gao, Yanfei Fan.Phase diagrams and thermochemical modeling of salt lake brine systems. IV. Thermodynamic framework and program implementation for multicomponent systems.Calphad, 2020, 71: 101806..
[2]Yanfei Fan, Dongdong Li, Dewen Zeng*, Dandan Gao, Wu Li.Heat capacity of Rb2SO4(aq) and Cs2SO4(aq) solutions and thermodynamic modelling of (Rb2SO4 + H2O) and (Cs2SO4 + H2O)systems[J].J. Chem. Thermodynamics, 2020, 142: 106001-1-106001-9..
[3]Shaoheng Wang, Dewen Zeng*, Qiongqiong Luo, Ning Zhang.Solubility Measurement of the Systems MF2 (M = Ca, Mg, Zn) + ZnSO4 + H2O and MF2 (M = Ca, Mg) + ZnF2 + H2O at 298.15 K[J].J. Chem. Eng. Data, 2019, 64: 3078-3084.
[4]Qiongqiong Luo, Dewen Zeng*, Shaoheng Wang.Solubility Phase Equilibrium of the Quaternary Reciprocal System Ca2+, Mn2+//F?, SO4 2? + H2O at 298.15 K[J].J. Chem. Eng. Data, 2019, 64: 1834-1839..
[5]Hongliang Li, Dewen Zeng, Chao Xu, Ze Tan.MgF2 Solubility in MgF2 + Salt + H2O Systems (Salt = MgSO4, (NH4)2SO4, NH4Cl) at 298.15 K[J].J. Chem. Eng. Data, 2018, 64: 245-248..
[6]Hongliang Li, Dewen Zeng*, Shaoheng Wang.Experimental Measurement of the Solid−Liquid Equilibrium of the Systems MF2 + H2O (M = Mg, Ca, Zn) from 298.15 to 353.15 K.J. Chem. Eng. Data, 2018, 63: 1733-1737..
[7]Ouyang Dong, Dewen Zeng, Dongdong Li,.A novel eutectic phase-change material: CaCl2?6H2O +NH4Cl +KCl[J].Calphad, 63: 92-99..
[8]F. Costanzo, W. Wang, Zh. Zhao, D. Zeng*, H. Yi, N. Zhang*.Structure evolution of mononuclear tungsten and molybdenum species in the protonation process: Insight from FPMD and DFT calculations.Chem. Phys., 2018, 502: 77-86..
[9]D. Gao, X. Yin, D. Zeng*, D. Li*.Phase diagrams and thermochemical modeling of salt lake brine systems. III. Li2SO4+H2O, Na2SO4+H2O, K2SO4+H2O, MgSO4+H2O and CaSO4+H2O systems[J].CALPHAD, 2018, 60: 163-176..
[10]D. Zeng*, D. Li, O. Dong, H. Han.Phase diagram of the NaCl–MgCl2–H2O system at 25–75°C and its application for MgCl2 · 6H2O purification[J].Russ. J. Phys. Chem. A, 2017, 91 (7) : 1255-1259..
[11]W. Li*, D. Zeng*, D. Gao, D. Li.Understanding the solid solution–aqueous solution equilibria in the KCl + RbCl + H2O system from experiments, atomistic simulation and thermodynamic modeling[J].J. Solution Chem., 2017, 46: 1871-1902..
[12]D. Zeng, Sh. Wang, H. Li.Solubility and ionic interaction of the CaF2–CaSO4–H2O system at 298.1 K[J].J. Solution Chem., 2017, 46: 1941-1947..
[13]Dewen Zeng, W. Voigt*, J. Sohr*.IUPAC-NIST solubility data series. 104. lithium sulfate and its double salts in aqueous solutions[J].J. Phys. Chem. Ref. Data, 46: 023101-1-023101-221..
[14]D. Zeng*, G. Zhang, J. Brugger, W. Wang, N. Zhang*.Species fine structure of transition metal Cu(II) in aqueous chloride-bearing solutions: Insights from X-ray absorption spectroscopy and ab initio XANES calculations[J].J. Molecular Liquids, 2017, 230: 200-208..
[15]Y. Du, J. Yue*, D. Zeng*, T. Liang, H. Yang.Phase diagram of the quaternary system LiCl+MgCl2+KCl+H2O at 323.15 K[J], 2017, 57: 126-133..
[16]R. Yin, D. Zeng, Zh. Zhao, H. Yang*.Isopiestic measurements of water activity for the H2SO4–H3PO4–H2O system at 298.15 K[J].J. Solution Chem., 45: 1580-1587..
[17]Dewen Zeng, Yuqi Tan, Dongdong Li*, Xia Yin*, Juan Jiang.Solubility phase diagram of the Ca(NO3)2?LiNO3?H2O system[J].J. Chem. Eng. Data, 2016, 61: 1125-1130..
[18]W. Voigt, Y. Chen, Q. Wang, D. Zeng*, H. Yang.Isopiestic measurements of water activity for the Li2SO4?MgSO4?H2O system at 323.15 and 373.15 K[J].J. Chem. Eng. Data, 2016, 61: 3157-3162..
[19]Q. Zhou, Y. Chen, W. Voigt, D. Zeng*, H. Yang.Isopiestic measurements on aqueous solutions of heavy metal sulfates: MSO4+H2O (M=Mn,Co,Ni,Cu,Zn). 2. T=373.15 K[J].J Chem. Eng. Data, 2016, 61: 3406-3412..
[20]Y. Yao, L. Guo, H. Han, X. Yin, D. Zeng*, D. Li.Phase diagrams and thermochemical modeling of salt lake brine systems. II. NaCl+H2O, KCl+H2O, MgCl2+H2O and CaCl2+H2O systems[J].CALPHAD, 2016, 53: 78-89..
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