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Effect of Pyrolysis Temperature on Biochar Microstructural Evolution, Physicochemical Characteristics, and Its Influence on Biochar/Polypropylene Composites

Applied Sciences · 2019 · Vol. 9(6) · pp. 1149–1149
Ahmed Yagoub ElnourAbdulaziz AlghyamahHamid ShaikhAnesh Manjaly PouloseSaeed M. Al‐ZahraniArfat AnisMohammad I. Al‐Wabel

Abstract

Environmental management through effective utilization of biowastes has been a topic of intensive research in recent years. This study examines the effect of pyrolysis temperature on the physical and morphological characteristic of biochar (BC) derived from lignocellulosic wastes. The biochar was prepared by pyrolysing date palm biomass at various temperatures, i.e., 300, 400, 500, 600, and 700 °C. These pyrolysed biochars were then characterized for their carbon content, mineral compositions, chemical functionalities, and morphological structures, for understanding their physicochemical characteristics and microstructural evolution. It was revealed that the pyrolytic condition plays a key role in the formation of biochar microstructure. These biochar samples were then utilized without any further treatments/purifications for their practical application as reinforcement materials for polymer composites. They were blended with a polypropylene matrix by a melt mixing technique followed by injection molding process. The type of biochar was found to significantly affect the composites properties. Differences in microstructure, surface chemistry, and chemical compositions of BCs were observed to be determining factors affecting the compatibility and thermomechanical properties of resulted composites.

Natural Fiber Reinforced CompositesPolymer Nanocomposites and Propertiesbiodegradable polymer synthesis and propertiesBiocharPyrolysisMaterials sciencePolypropyleneMicrostructurePyrolytic carbonComposite materialCharcoalMolding (decorative)Chemical engineering
Citations
308
FWCI
10.69
field-weighted impact
References
39
Percentile
99%
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Citations per year
References
Polymer nanotechnology: Nanocomposites
Polymer · 2008 · 3,221 citations
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