Waste-to-energy valorisation of municipal solid waste using elephant grass and abattoir waste as co-substrates

Abstract This study examined the anaerobic co-digestion of the organic fraction of municipal solid waste (OFMSW), elephant grass (EG), and abattoir waste (AW) to boost biomethane production in Kumasi, Ghana. Analyses of physicochemical, ultimate, lignocellulosic, and organic fractions showed that the substrates have complementary traits suitable for anaerobic digestion. Elephant grass had high carbohydrate levels and low lignin, while abattoir waste supplied nitrogen-rich compounds to enhance nutrient balance during digestion. Biomethane potential (BMP) tests under mesophilic conditions with various substrate mixes revealed that EG 100 generated a total methane yield of 275.55 mL CH₄ g⁻ 1 VS, a 26.7% increase over OFMSW mono-digestion (217.51 mL CH₄ g⁻ 1 VS). AW 100 produced 155.52 mL CH₄ g⁻ 1 VS. The co-digested mixture O50EG50 achieved the highest methane yield of 346.70 mL CH₄ g⁻ 1 VS, representing a 59.4% increase over mono-digestion of OFMSW. The modified Gompertz model estimated an ultimate methane yield (G₀) of 531.37 mL CH₄ g⁻ 1 VS for O 50 EG 50 , about 142.3% higher than for OFMSW alone, indicating that the co-digestion conditions need optimisation. These findings indicate that co-digesting OFMSW with elephant grass significantly enhances biomethane output and offers a sustainable waste-to-energy strategy for Ghana.

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Publication Details

Journal
Discover Environment
Published
2026-10-04
DOI
https://doi.org/10.1007/s44274-026-01105-4
Primary Topic
Anaerobic Digestion and Biogas Production
Type
article
Field-Weighted Citation Impact
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article

Waste-to-energy valorisation of municipal solid waste using elephant grass and abattoir waste as co-substrates

Julius Cudjoe Ahiekpor, Walter Stinner, Osei-Wusu Achaw, Satyanarayana Narra et al.
Discover Environment
Anaerobic Digestion and Biogas Production
article

Waste-to-energy valorisation of municipal solid waste using elephant grass and abattoir waste as co-substrates

Julius Cudjoe Ahiekpor, Walter Stinner, Osei-Wusu Achaw, Satyanarayana Narra, James Darmey, Philip Allan Barnes, Livine Carline Kepseu Yepmou, Bridget Yelbert
article en

Abstract

Abstract This study examined the anaerobic co-digestion of the organic fraction of municipal solid waste (OFMSW), elephant grass (EG), and abattoir waste (AW) to boost biomethane production in Kumasi, Ghana. Analyses of physicochemical, ultimate, lignocellulosic, and organic fractions showed that the substrates have complementary traits suitable for anaerobic digestion. Elephant grass had high carbohydrate levels and low lignin, while abattoir waste supplied nitrogen-rich compounds to enhance nutrient balance during digestion. Biomethane potential (BMP) tests under mesophilic conditions with various substrate mixes revealed that EG 100 generated a total methane yield of 275.55 mL CH₄ g⁻ 1 VS, a 26.7% increase over OFMSW mono-digestion (217.51 mL CH₄ g⁻ 1 VS). AW 100 produced 155.52 mL CH₄ g⁻ 1 VS. The co-digested mixture O50EG50 achieved the highest methane yield of 346.70 mL CH₄ g⁻ 1 VS, representing a 59.4% increase over mono-digestion of OFMSW. The modified Gompertz model estimated an ultimate methane yield (G₀) of 531.37 mL CH₄ g⁻ 1 VS for O 50 EG 50 , about 142.3% higher than for OFMSW alone, indicating that the co-digestion conditions need optimisation. These findings indicate that co-digesting OFMSW with elephant grass significantly enhances biomethane output and offers a sustainable waste-to-energy strategy for Ghana.

Discover EnvironmentVol. 4(1)
Kumasi Technical University (GH), Deutsches Biomasseforschungszentrum (DE), West African Science Service Centre on Climate Change and Adapted Land Use (GH), University of Rostock (DE)
Universität Rostock
Responsible consumption and production, Affordable and clean energy, Climate action
Openalex Percentile: Top 16%
Anaerobic Digestion and Biogas Production
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