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Updated: Sep 23, 2026

Evaluation of Integrated Anaerobic Digestion and Hydrothermal Carbonization for Bioenergy Production
Published on: June 15, 2014
Biogas Production from Mechanically Pretreated Rice Husk and Cow Paunch Content - Part 1: Experimental Performance of
Samuel Nketia Boateng1,2, Richard Arthur3, Isaac Mbir Bryant1
1Department of Environmental Science, School of Biological Sciences, College of Agriculture and Natural Sciences, University of Cape Coast, Ghana.
Abstract:
Mechanical pre-treatment can improve anaerobic digestion of lignocellulosic residues, but the effect of rice husk (RH) particle size during co-digestion with cow paunch content has received limited attention. This study evaluated whether smaller mechanically milled RH particles increase methane production during batch co-digestion with cow paunch content. Rice husk was milled and separated into four particle-size fractions: 0-125 µm (F1), >125-250 µm (F2), >250-500 µm (F3), and >500-1180 µm (F4). Batch biomethane potential assays were conducted under mesophilic conditions for 126 days using cow paunch content as inoculum and co-substrate. Particle-size distribution, substrate composition, cumulative methane yield, biodegradability index, pH, volatile solids, and total solids removal were assessed. F1 produced the highest cumulative methane yield (311 ± 2.7 mL CH4/g VS), followed by F2 (289 ± 2.5 mL CH4/g VS), F4 (262 ± 9.08 mL CH4/g VS), the control (230 ± 4.3 mL CH4/g VS) and F3 (134 ± 0.3 mL CH4/g VS). Relative to the control, F1, F2 and F4 increased methane yield by approximately 35%, 26% and 14%, respectively, whereas F3 showed lower conversion. The final digestate pH (7.39-7.62), volatile solids removal and biodegradability indices indicated stable digestion for most treatments. The findings support the hypothesis that RH particle-size reduction can enhance methane recovery during co-digestion with cow paunch content, although the F3 outcome indicates that particle size alone does not determine process performance. Thus, energy-use and cost assessments are needed before scale-up.
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