4.5 Article

Development of sustainable approaches for converting the agro-weedsLudwigia hyssopifoliato biogas production

Journal

BIOMASS CONVERSION AND BIOREFINERY
Volume 12, Issue 3, Pages 793-801

Publisher

SPRINGER HEIDELBERG
DOI: 10.1007/s13399-020-01083-4

Keywords

Water primrose; Pretreatment; Mono-digestion; Biogas production

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This study evaluated the potential biogas production from water primrose and found that the treatment with 2% NaOH had the highest biogas yield and methane content. Increasing or decreasing the NaOH concentration did not significantly improve the treatment efficiency. The study also calculated the power potential of the produced biogas.
This study aimed to evaluate potential biogas production fromLudwigia hyssopifolia(water primrose) and examine the effect of alkaline pretreatment on samples through biogas production efficiencies. The research was carried out for 45 days of operation from anaerobic mono-digestion of water primrose by using a batch experiment. Pretreatment was applied for substrate using sodium hydroxide (NaOH) solution (w/v) at different concentrations (0, 1, 2, 3, and 4%) with 10% of total solids (TS) based on dry matter. The scanning electron microscopy (SEM) images were captured to investigate the characteristics of the raw material and pretreated biomass. The results showed that the treatment with 2% NaOH has the highest performance in biogas yield (8072.00 mL) and methane content (64.72%). Notably, the increase (3, 4%) or decreasing (0, 1%) NaOH concentration in treating water primrose did not achieve a significant improvement. Further investigation in the power potential of produced biogas was calculated, and the result was 22,382.19 W/m(3)power. Consequently, the feasibility of the alkaline pretreatment method for biogas production and achievable potential for energy efficiency indicates that water primrose is appropriate agro-weed biomass for bioenergy applications.

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