Natural Zeolite Polypropylene Composite Film Preparation and Characterization
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Date
2001
Authors
Özmıhçı, Filiz
Balköse, Devrim
Ülkü, Semra
Journal Title
Journal ISSN
Volume Title
Publisher
John Wiley and Sons Inc.
Open Access Color
BRONZE
Green Open Access
Yes
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Publicly Funded
No
Abstract
In this research, the preparation and characterization of polypropylene (PP) and natural zeolite composites were studied. Natural zeolite mined in Gördes, Turkey was used as an alternative filler to CaCO3. Films were prepared by the extrusion of PP, and surface-modified zeolite was made by polyethylene glycol 4000 with 2-4% zeolite. Zeolite-filled composites had densities between 0.73 and 0.83 g/cm3 and had void fractions of 0.07-0.20. Although the permeability of water vapour through 2% zeolite-filled composites was very small, 4% zeolite-filled films had very high permeabilities. The yield stresses of 2-4% zeolite-containing films were around 26-27 N/mm2 and were lower than that of PP, which indicated no adhesion between PP and zeolite. The effect of zeolite on the thermal degradation behaviour in air and in a N2 atmosphere was also studied. In air, zeolites did not cause the oxidation of PP. In a N2 atmosphere, although the start of the thermal degradation of PP was retarded by zeolite, composites degraded at a faster rate than PP once the degradation started. At a processing temperature of 200°C, zeolites had no effect on the degradation of PP.
Description
Keywords
Composite film, Crystallization, Natural zeolites, Poly(propylene) (PP), Thermal degradation, Thermal properties, Water permeable, Thermal properties, Thermal degradation, Composite film, Natural zeolites, Poly(propylene) (PP), Crystallization, Water permeable
Fields of Science
02 engineering and technology, 0210 nano-technology
Citation
Özmıhçı, F., Balköse, D., and Ülkü, S. (2001). Natural zeolite polypropylene composite film preparation and characterization. Journal of Applied Polymer Science, 82(12), 2913-2921. doi:10.1002/app.2147
WoS Q
Q3
Scopus Q
Q2

OpenCitations Citation Count
38
Source
Journal of Applied Polymer Science
Volume
82
Issue
12
Start Page
2913
End Page
2921
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Citations
CrossRef : 36
Scopus : 42
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Mendeley Readers : 23
SCOPUS™ Citations
42
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Web of Science™ Citations
42
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Page Views
839
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Downloads
541
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