DOE OSTI · 3378215
Graphitization of banana peel – synergistic effect of Ca and other elements of the biomass on carbon structure transformation
Abstract
Recently, growing interest has been observed in using calcium as an effective catalyst for graphitizing disordered carbon materials derived from biomass and bioprecursors, such as cellulose and lignin, at relatively low tem peratures (<2000 °C). Herein, it is demonstrated that in the presence of elements such as calcium, silicon, sulfur, and potassium, which are abundant in banana peel composed of cellulose and lignin base, graphitization occurs much more effectively. The addition of external calcium source, in the form of calcium carbonate, to the banana peel-derived carbon and heat-treatment of the mixture under protective atmosphere up to 1750 °C results in a significant increase in the degree of the graphitization order and local formation of graphite crystals, whereas the same preparation and heat-treatment procedure applied to carbon material derived from pristine cellulose does not lead to such effective graphitization. It is indicated that the graphitization of banana peel carbon occurs due to the synergistic effect of the external Ca-based catalyst and the internal elements present in the raw biomass, supporting the transformation of the disordered graphene-like layers into graphitic structures. These findings are important for the future production of green graphite from biomass
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Shabbir, Muhammad Jamshaid [University of Silesia (Poland)], Liszka, Barbara [University of Silesia (Poland)], Szubka, Magdalena [University of Silesia (Poland)], Pawlyta, Mirosława [Silesian University of Technology (Poland)], Zubko, Maciej [University of Silesia (Poland)] (ORCID:0000000289873902), Ilavsky, Jan [Argonne National Laboratory (ANL), Argonne, IL (United States). Advanced Photon Source (APS)], Jurkiewicz, Karolina [University of Silesia (Poland)] (ORCID:0000000242897827). 2026-10-01. Graphitization of banana peel – synergistic effect of Ca and other elements of the biomass on carbon structure transformation. https://doi.org/10.1016/j.biombioe.2026.109366
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