Influence of Yield Structure and Chemical Composition of Monoecious and Dioecious Hemp Forms on the Efficiency of Advanced Biofuels and Biocomposite Production

Published: 8 July 2026| Version 3 | DOI: 10.17632/x58wckch89.3
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The influence of industrial hemp variety on the effectiveness of advanced biofuels and biocomposite production was assessed. The plant material consisted of biomass from dioecious and monoecious hemp varieties grown in a comparative field experiment. Significant variatations were observed between the tested varieties in terms of yield and morphological traits. The study also revealed marked distinctions in the chemical composition of monoecious and dioecious hemp biomass at various processing stages (raw biomass, after alkaline treatment, and after enzymatic hydrolysis), particularly in cellulose, hemicellulose, and lignin content. Dioecious forms exhibited higher cellulose and lignin levels, while monoecious forms showed higher hemicellulose content. The chemical composition results were supported by FTIR and SEM analyses. Following enzymatic hydrolysis optimized using the RSM method, high glucose concentrations were obtained, especially for the dioecious varieties Eletta Campana and Kompolti. Carrying out the chemical modification process and then the biocomposite production demonstrated that silanization, unlike alkali pretreatment alone, substantially improved interfacial adhesion and mechanical performance of PLA/hemp biocomposites. Among the tested fillers both monocious Białobrzeskie and dioecious Kompolti varieties showed the strongest reinforcing effects.

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Life Sciences, Chemical Compound, Plant Breeding, Biocomposites

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