Abstract
This study investigated the impact of various chemical pretreatment methods on the biomethane production from Xyris capensis. The feedstock was treated with NaOH, HCl, H2O2, and oxidation using 3, 9, 5, and 75% H2O2 + 25% H2SO4, respectively. Pretreated and untreated substrates were analyzed for physicochemical characteristics and subjected to anaerobic digestion at a mesophilic temperature in a laboratory-batch experiment. The results show that chemical pretreatment significantly influences the physicochemical characteristics of Xyris capensis. It was noticed that the C/N ratios of 37.15, 37.26, 28.90, 27.63, and 28.02 were recorded for NaOH, HCl, H2O2, oxidative pretreatment, and untreated Xyris capensis, respectively. Compared to the untreated substrate, methane generation was enhanced by 20%, 107%, 68%, and 88% for NaOH, HCl, H2O2, and oxidative pretreatment, respectively. Therefore, chemical pretreatment presents a promising biotechnological approach for producing methane from lignocellulose feedstocks. The technique is sustainable due to its ability to recover and reuse chemicals, thereby reducing production costs.
| Original language | English |
|---|---|
| Article number | 02006 |
| Journal | E3S Web of Conferences |
| Volume | 684 |
| DOIs | |
| Publication status | Published - 7 Jan 2026 |
| Event | 2025 2025 International Conference on Engineering for a Sustainable World, ICESW 2025 - Ota, Nigeria Duration: 24 Nov 2025 → 25 Nov 2025 |
Keywords
- Anaerobic digestion
- Chemical
- Lignocellulose feedstocks
- Methane
- Pretreatment
ASJC Scopus subject areas
- General Environmental Science
- General Energy
- General Earth and Planetary Sciences
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