Hydrolytic Depolymerization of Polyethylene Terephthalate by Reactive Extrusion
-
T. Yalçinyuva
Abstract
Continuous hydrolytic depolymerization of polyethylene terephthalate (PET) resin at high temperature and pressure was carried out in a co-rotating twin screw extruder. In this novel process, hydrolysis is achieved by injection of saturated steam at high pressure. Optimum conditions occur at relatively low screw speeds and water/PET ratios. Hydrolysis extent was measured using carboxyl end group titration, and by determination of molecular weights using NMR and GPC analysis. Low molecular weight products are obtained at low residence times in the extruder, suggesting high depolymerization rates. This is supported by the results of a simple kinetic model.
Acknowledgements
The authors are grateful to the Martinex Research Corporation, the Natural Science and Engineering Research Council of Canada (NSERC) and the Ministry of Education, Government of Quebec for the support of this work, and to Eastman Kodak Company for supplying the PET resins used.
References
1 Baliga, S., Wong, W.T.: J. Polym. Sci. Part A: Polym. Chem. 27, p. 2071 (1989)10.1002/pola.1989.080270625Suche in Google Scholar
2 Alter, H., in Encyclopedia of Polymer Science and Engineering. Kroschwits (Ed.), John Wiley and Sons, New York, p.103/128 (1986)Suche in Google Scholar
3 Leaversuch, R.D.: Modern Plastics 68, p. 40(1991)Suche in Google Scholar
4 Campanelli, J.R., Kamal, M.R., Cooper, D.G.: J. Appl. Polym. Sci. 48, p. 443 (1993)10.1002/app.1993.070480309Suche in Google Scholar
5 Kao, C-Y., Wan, B-Z., Cheng W.H.: Ind. Eng. Chem. Res. 37, p.1288 (1998)10.1021/ie970543qSuche in Google Scholar
6 Menges, G, Bartilla, T., Heidemeyer, P., in New Polymeric Materials, Proceeding of International Seminar. Martuscelli, E., Marchetta, C., (Eds), VNU Sci. Press, Utrecht, p. 129 (1986)Suche in Google Scholar
7 Mack, W.A.: Chemical Engineering, May 15 p. 99, (1972)Suche in Google Scholar
8 Wielgolinski, L., Nangeroni, J., in Second International Conference on Reactive Processing of Polymers. Proceedings Lindt, J. T. (Ed.), University of Pittsburgh, Pennsylvania, p. 303, (1982)Suche in Google Scholar
9 Hagberg, C.G.: SPE Antec Tech. Papers 38, p. 2, (1992)Suche in Google Scholar
10 Lamba, M.: Polymer Process Engineering, 5 (3 & 4), p. 297 (1987– 88)Suche in Google Scholar
11 Jackson, S.M., Dreiblatt, A.: Plant/ Operations Progress, 9 (4), p. 220, (1990)10.1002/prsb.720090407Suche in Google Scholar
12 U.S. Patent 4 359 557 (1982), Watkins, K.R., Dean, L.R.Suche in Google Scholar
13 U.S. Patent 3 808 302 (1974), Dyer, R.F., Meyer, A.K.Suche in Google Scholar
14 German (East) Patent DD 116251 (1975), Buschmann, G., Knobloch, W., Fechtner, H., Lohmann, P., Markel, K., Schaller, G., Krekow, A., Zuchold, H.Suche in Google Scholar
15 Lamba, M., Druz, J., Bouilloux, A., in New Polymeric Materials, Proceeding Int. Seminar. Martuscelli, E., Marchetta, C., (Eds.), VNU Sci. Press, Utrecht, p. 33 (1986)Suche in Google Scholar
16 Grigat, E.: Kunstoffe 5, p. 281 (1978)Suche in Google Scholar
17 Yalçinyuva, T.: PhD thesis, Institute of Physical Sciences, Istanbul University, Turkey, March (1994)Suche in Google Scholar
18 Zahn, H., Gleitsman, G.B.: Angew. Chem. Internat. Edit. 2 (8), p. 410 (1963)10.1002/anie.196304101Suche in Google Scholar
19 Garmon, R.G.: in Polymer Molecular Weights. Slade, Jr., P.E. (Ed.), Marcell Dekker, New York, p. 54 (1975)Suche in Google Scholar
20 Page, Jr., T.F., Bresler, W.E.: Anal. Chem. 36 (10), p. 1981 (1964)10.1021/ac60216a029Suche in Google Scholar
21 Rabek, J.F.: Experimental Methods in Polymer Chemistry, John Wiley and Sons, New York p. 125 (1980)Suche in Google Scholar
22 NN in Chemical Engineering Guide to Valves. Green, R.W. (Ed.), Chemical Engineering, McGraw Hill, New York, p. 131 (1984)Suche in Google Scholar
23 ASTM Standard D 3349-86, American Standard for Testing and Materials (1986)Suche in Google Scholar
© 2000 Walter de Gruyter GmbH, Berlin/Boston, Germany
Artikel in diesem Heft
- Contents
- Editorial
- Second of a Series: Pioneering Polymer Industry Developments—The IG Farbenindustrie and the Establishment of Synthetic Rubber
- Screw extrusion/mixing
- Analysis of Mixing in Corotating Twin Screw Extruders through Numerical Simulation
- Melt Conveying in Co-rotating Twin Screw Extruders
- The Adjustable Grooved Feed Extruder
- Reactive Extrusion
- Hydrolytic Depolymerization of Polyethylene Terephthalate by Reactive Extrusion
- Effect of Conversion on Chain Addition Copolymerizations Performed in a Backmixed Drag Flow Extruder Reactor
- Fiber and film
- Single and Double Bubble Tubular Film Extrusion of Polybutylene Terephthalate
- Molding
- Viscoplastic Material Modeling for the Stretch Blow Molding Simulation
- The Effects of Compression Pressure on Injection Compression Molding
- Numerical Simulation of Compression Molding of UHMWPE
- Numerical Simulation of Compression Molding of UHMWPE
- Mechanical Properties of Isotactic Polypropylene with Oriented and Cross-hatched Lamellae Structure
- Morphological Characterisation of Long Glass Fibre Composites for the Thermoforming Process
- PPS News
- PPS News
- Professional news
- New Petrochemical Complexes
Artikel in diesem Heft
- Contents
- Editorial
- Second of a Series: Pioneering Polymer Industry Developments—The IG Farbenindustrie and the Establishment of Synthetic Rubber
- Screw extrusion/mixing
- Analysis of Mixing in Corotating Twin Screw Extruders through Numerical Simulation
- Melt Conveying in Co-rotating Twin Screw Extruders
- The Adjustable Grooved Feed Extruder
- Reactive Extrusion
- Hydrolytic Depolymerization of Polyethylene Terephthalate by Reactive Extrusion
- Effect of Conversion on Chain Addition Copolymerizations Performed in a Backmixed Drag Flow Extruder Reactor
- Fiber and film
- Single and Double Bubble Tubular Film Extrusion of Polybutylene Terephthalate
- Molding
- Viscoplastic Material Modeling for the Stretch Blow Molding Simulation
- The Effects of Compression Pressure on Injection Compression Molding
- Numerical Simulation of Compression Molding of UHMWPE
- Numerical Simulation of Compression Molding of UHMWPE
- Mechanical Properties of Isotactic Polypropylene with Oriented and Cross-hatched Lamellae Structure
- Morphological Characterisation of Long Glass Fibre Composites for the Thermoforming Process
- PPS News
- PPS News
- Professional news
- New Petrochemical Complexes