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Biodegradable compatibilized polymer blends for packaging applications: A literature review

Journal of Applied Polymer Science · 2017 · Vol. 135(24)
Rajendran MuthurajManjusri MisraAmar K. Mohanty

Abstract

ABSTRACT The majority of materials used for short‐term and disposable packaging application are non‐biodegradable which are not satisfying the demands in environmental safety and sustainability. Biodegradable polymers are an alternative for these non‐biodegradable materials. The biodegradable polymeric materials can degrade in a reasonable time period without causing environmental problems. However, biodegradable polymers possess some limitations such as comparatively high cost, insufficient mechanical performances, and inferior thermal stability to extend their widespread application in packaging industry. To overcome these limitations, one of the most commonly used strategies is melt blending of dissimilar biodegradable polymers. Unfortunately, most of the biodegradable polymer blends exhibit insufficient performance because they are thermodynamically immiscible as well as exhibit poor compatibility between the blended components. It has been established that the compatibilization is a well‐known strategy to improve the performances of the immiscible biodegradable polymer blends by enhancing the adhesion between the phases. As a result, recent studies focus on various compatibilizers to enhance the performances of the resulting biodegradable polymer blends. This review summarizes the recent developments on a variety of biodegradable polymer blends compatibilized by melt processing with a main focus of ex situ and in situ compatibilization strategies. © 2017 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2018 , 135 , 45726.

biodegradable polymer synthesis and propertiesMicroplastics and Plastic PollutionAdditive Manufacturing and 3D Printing TechnologiesCompatibilizationBiodegradable polymerMaterials sciencePolymerPolymer blendBiodegradationCompatibility (geochemistry)Biodegradable plasticPolymer scienceComposite material

Funding

  • Ontario Ministry of Agriculture, Food and Rural Affairs
  • Canada Foundation for Innovation
  • Natural Sciences and Engineering Research Council of Canada
  • Agriculture and Agri-Food Canada
Citations
376
FWCI
10.08
field-weighted impact
References
175
Percentile
99%
vs. same field & year
Citations per year
References
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