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Optimization of Biomethane Production via Fermentation of Chicken Manure Using Marine Sediment: A Modeling Approach Using Response Surface Methodology. | LitMetric

AI Article Synopsis

  • - The study explored using marine sediment as a source of methanogenic bacteria for anaerobic digestion of chicken manure, achieving notable methane production even under challenging solid conditions.
  • - Marine sediment outperformed traditional Ozouh sludge in ammonia tolerance, producing significant methane levels despite higher ammonia accumulation.
  • - Optimization of methane production was achieved through a response surface methodology, identifying the ideal conditions of a 1:2.5 chicken manure to marine sediment ratio, 10% total solid content, and a 45-day incubation period.

Article Abstract

In this study, marine sediment (MS) was successfully used as a source of methanogenic bacteria for the anaerobic digestion (AD) of chicken manure (CM). Using MS showed high production in liquid and semi-solid conditions. Even in solid conditions, 169.3 mL/g volatile solids of chicken manure (VS-CM) was produced, despite the accumulation of ammonia (4.2 g NH-N/kg CM). To the best of our knowledge, this is the highest methane production from CM alone, without pretreatment, in solid conditions (20%). Comparing MS to Ozouh sludge (excess activated sewage sludge) (OS), using OS under semi-solid conditions resulted in higher methane production, while using MS resulted in more ammonia tolerance (301 mL/gVS-CM at 8.58 g NH-N/kg). Production optimization was carried out via a response surface methodology (RDM) model involving four independent variables (inoculum ratio, total solid content, NaCl concentration, and incubation time). Optimized methane production (324.36 mL/gVS-CM) was at a CM:MS ratio of 1:2.5 with no NaCl supplementation, 10% total solid content, and an incubation time of 45 days.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8622348PMC
http://dx.doi.org/10.3390/ijerph182211988DOI Listing

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