Non-Coking coal as an additive to enhance properties of groundnut shell reinforced polypropylene composites

Author:

MS Santosh1,K Chethan2,C Vasudev2,Guna Vijaykumar2,KR Balaji1,P Gopinathan3,Kumar Manish4,Reddy Narendra2ORCID

Affiliation:

1. Coal to Hydrogen Energy for Sustainable Solutions (CHESS) Division, CSIR – Central Institute of Mining and Fuel Research (CIMFR), Dhanbad, India

2. Center for Incubation Innovation Research and Consultancy, Jyothy Institute of Technology Campus, Bengaluru, India

3. Resource Quality Assessment (RQA) Division, CSIR – Central Institute of Mining and Fuel Research (CIMFR), Dhanbad, India

4. Coal Carbonization Division, CSIR – Central Institute of Mining and Fuel Research (CIMFR), Dhanbad, India

Abstract

Groundnut shells (GNS) are renewable and sustainable sources that can reinforce polypropylene for composites intended for interior building and other applications. However, the hydrophilicity, low thermal and noise insulation of GNS reinforced polypropylene (PP) necessitate the use of additives to improve properties. In this work, non-coking bituminous coal was used as an additive to improve the properties of GNS-PP composites. Up to 30% of coal particles were included and the changes in tensile, flexural properties and noise and thermal insulation were studied. Morphological analysis showed limited interaction of coal with GNS or PP and consequently, there was only marginal improvement in the mechanical properties. However, moisture sorption of the composites decreased by 25% and the limited oxygen index increased to 27 from 24 without any coal. The presence of coal increases sound absorption and the noise absorption coefficient showed high absorption at specific frequencies. Coal is an abundantly available natural material which is suitable to improve the performance of composites.

Publisher

SAGE Publications

Subject

Condensed Matter Physics,Ceramics and Composites

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