4.7 Review

Valorization of Biomass-Derived Polymers to Functional Biochar Materials for Supercapacitor Applications via Pyrolysis: Advances and Perspectives

Journal

POLYMERS
Volume 15, Issue 12, Pages -

Publisher

MDPI
DOI: 10.3390/polym15122741

Keywords

biochar; biomass-derived polymers; electric double layer; supercapacitor; surface modification

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Polymers from biomass waste can be converted to functional biochar materials via pyrolysis for various applications. The biochar derived from biological polymeric substances shows potential as an alternative electrode material for high-performance supercapacitors. This review discusses the mechanisms and technologies for char formation from biomass waste and introduces energy storage mechanisms of supercapacitors, providing insights into the use of biological polymer-based char material for electrochemical energy storage. It also summarizes recent progress in biochar modification approaches to enhance the capacitance of biochar-derived supercapacitors.
Polymers from biomass waste including plant/forest waste, biological industrial process waste, municipal solid waste, algae, and livestock are potential sources for renewable and sustainable resources. Converting biomass-derived polymers to functional biochar materials via pyrolysis is a mature and promising approach as these products can be widely utilized in many areas such as carbon sequestration, power production, environmental remediation, and energy storage. With abundant sources, low cost, and special features, the biochar derived from biological polymeric substances exhibits great potential to be an alternative electrode material of high-performance supercapacitors. To extend this scope of application, synthesis of high-quality biochar will be a key issue. This work systematically reviews the char formation mechanisms and technologies from polymeric substances in biomass waste and introduces energy storage mechanisms of supercapacitors to provide overall insight into the biological polymer-based char material for electrochemical energy storage. Aiming to enhance the capacitance of biochar-derived supercapacitor, recent progress in biochar modification approaches including surface activation, doping, and recombination is also summarized. This review can provide guidance for valorizing biomass waste to functional biochar materials for supercapacitor to meet future needs.

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