Modeling of Precipitation Polymerization I: The Method of Finite Molecular Weight Moments
Precipitation polymerization method is a non homogeneous method in which polymer chains are separated from continuous phase as polymer particles. In this method, all polymerization reactions occur in continuous and polymer dispersed phases based on simultaneous polymerization theory. Hunkeler theory...
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| Published in | e-Polymers Vol. 7; no. 1; pp. 1432 - 1450 |
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| Main Authors | , , , |
| Format | Journal Article |
| Language | English |
| Published |
De Gruyter
01.12.2007
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| Subjects | |
| Online Access | Get full text |
| ISSN | 2197-4586 1618-7229 1618-7229 |
| DOI | 10.1515/epoly.2007.7.1.1432 |
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| Abstract | Precipitation polymerization method is a non homogeneous method in which polymer chains are separated from continuous phase as polymer particles. In this method, all polymerization reactions occur in continuous and polymer dispersed phases based on simultaneous polymerization theory. Hunkeler theory is a perfect "simultaneous polymerization" theory that predicts molecular weights and the rate of polymerization for precipitation polymerization of hydrophilic monomers. In this paper, finite moment method is used to predict features of precipitation polymerization. This model is able to predict number and weight average degree of polymerization in dispersed and continuous phases, polydispersity index (PDI) for two phases and volume fraction of primary and secondary particles. Experimental results are in agreement with the properties of dispersed phase; weight and number average degree of polymerization in the dispersed phase is more than that of degrees of polymerization in the continuous phase. The PDI of polymer formed in the dispersed phase is equal to 2 and that of PDI in the continuous phase is less than 2. Furthermore Hunkeler mathematical model is reviewed critically. |
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| AbstractList | Precipitation polymerization method is a non homogeneous method in which polymer chains are separated from continuous phase as polymer particles. In this method, all polymerization reactions occur in continuous and polymer dispersed phases based on simultaneous polymerization theory. Hunkeler theory is a perfect "simultaneous polymerization" theory that predicts molecular weights and the rate of polymerization for precipitation polymerization of hydrophilic monomers. In this paper, finite moment method is used to predict features of precipitation polymerization. This model is able to predict number and weight average degree of polymerization in dispersed and continuous phases, polydispersity index (PDI) for two phases and volume fraction of primary and secondary particles. Experimental results are in agreement with the properties of dispersed phase; weight and number average degree of polymerization in the dispersed phase is more than that of degrees of polymerization in the continuous phase. The PDI of polymer formed in the dispersed phase is equal to 2 and that of PDI in the continuous phase is less than 2. Furthermore Hunkeler mathematical model is reviewed critically. |
| Author | Bouhendi, H. Rafizadeh, M. Safinejad, A. Haddadi-Asl, V. |
| Author_xml | – sequence: 1 givenname: H. surname: Bouhendi fullname: Bouhendi, H. organization: Iran Polymer and Petrochemical Institute, P.O. Box 14965/115 – sequence: 2 givenname: V. surname: Haddadi-Asl fullname: Haddadi-Asl, V. email: haddadi@aut.ac.ir organization: National Petrochemical Co., Petrochemical Research and Technology Co., P.O. Box 14258, Iran, Tehran – sequence: 3 givenname: M. surname: Rafizadeh fullname: Rafizadeh, M. organization: Polymer Engineering Department, Amirkabir University of Technology, P.O. Box 15875- 4413 – sequence: 4 givenname: A. surname: Safinejad fullname: Safinejad, A. organization: National Petrochemical Co., Petrochemical Research and Technology Co., P.O. Box 14258, Iran, Tehran |
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| Snippet | Precipitation polymerization method is a non homogeneous method in which polymer chains are separated from continuous phase as polymer particles. In this... |
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| SubjectTerms | Degree of polymerization Finite moment Modeling Precipitation Radical polymerization |
| Title | Modeling of Precipitation Polymerization I: The Method of Finite Molecular Weight Moments |
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