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2000年以前
 
发布作者:  发布时间:2017-03-28 已读:
 
 
  
1. Chongli Zhong and H. Masuoka, Prediction of excess enthalpies at low and high pressures using a modified MHV1 mixing rule, Fluid Phase Equilibria, 1999, 158, 283-291.

2. Chongli Zhong and H. Masuoka, Modeling of gas solubility in polymers with cubic equations of state, Fluid Phase Equilibria, 1998, 144, 49-57.

3. W. Wang, X. Liu, Chongli Zhong, C.W. Twu and J.E. Coon, Group contribution simplified hole theory equation of state for liquid polymers and solvents and their solutions, Fluid Phase Equilibria, 1998, 144, 23-36.

4. Chongli Zhong and H. Masuoka, Correlations of Henry’s constants of nonpolar solutes in molten polypropylene and poly(dimethyl siloxane) and polar solutes in molten polyethylene and poly (dimethyl siloxane), Ind. Eng. Chem. Res., 1997, 36, 2509-2513.

5. Chongli Zhong and H. Masuoka, An EOS/GE type mixing rule for perturbed hard-sphere equation of state and its application to the calculation of solid solubility in supercritical carbon dioxide, Fluid Phase Equilibria, 1997, 141, 13-23.

6. Chongli Zhong, H. Takeuchi and H. Masuoka, Vapor-liquid equilibria calculation in gas/large alkane systems using a group contribution equation of state, J. Chem. Eng. Japan, 1997, 30, 1133-1137.

7. W. Wang, X. Liu, Chongli Zhong, C.W. Twu and J.E. Coon, Simplified hole theory equation of state for liquid polymers and solvents and their solutions, Ind. Eng. Chem. Res., 1997, 36, 2390-2398.

8. Chongli Zhong and H. Masuoka, Prediction of Henry’s constants for polymer containing systems
using the SRK equation of state coupled with a new modified UNIFAC model, Fluid Phase Equilibria, 1996, 126, 1-12.

9. Chongli Zhong and H. Masuoka, A new mixing rule for cubic equations of state and its application to vapor-liquid equilibria of polymer solutions, Fluid Phase Equilibria, 1996, 123, 59-69.

10. Chongli Zhong , Y. Sato, H. Masuoka and X. Chen, Improvement of predictive accuracy of the UNIFAC model for vapor-liquid equilibria of polymer solutions, Fluid Phase Equilibria, 1996, 123, 97-106.

11. Chongli Zhong and H. Masuoka, Mixing rules for accurate prediction of vapor-liquid equilibria of gas/large alkane systems using SRK equation of state combined with UNIFAC, J. Chem. Eng. Japan, 1996, 29, 315-322.

12. Chongli Zhong, W. Wang and H. Lu, Open-cell model equation of state for liquids. 2. Polymer solutions and blends, Macromolecules, 1995, 28, 7737-7743.

13. Chongli Zhong, W. Wang and H. Lu, Open-cell model equation of state for liquids. 1. P-V-T behavior for liquids and liquid polymers,Macromolecules, 1994, 27, 660-664.

14. Chongli Zhong, W. Wang and H. Lu, Application of the simplified hole theory equation of state to polymer solutions and blends, Fluid Phase Equilibria, 1994, 102, 173-179.

15. Chongli Zhong, W. Wang and H. Lu, Simplified hole theory equation of state for polymer liquids, Fluid Phase Equilibria, 1993, 86, 137-146.

16. Chongli Zhong, W. Wang and Aa. Fredenslund, Description of ternary liquid-liquid equilibria near the critical region by scaling law, Fluid Phase Equilibria, 1993, 83, 119-126.

17. W. Wang and Chongli Zhong, Mixing rules for hydrogen-containing systems, Fluid Phase Equilibria, 1989, 47, 103-114.
 
 
 
 
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