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December 6, 2025Water2 citationsOpen Access

Unravelling Metabolic Pathways and Evaluating Process Performances in Anaerobic Digestion of Livestock Manures

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RKRahul KadamSJSangyeol JoJPJungyu Park

Key Points

  • Methane yield from pig manure reached 229 mL-CH4/g VS, indicating higher degradation efficiency compared to cattle manure.
  • Key methanogens include Methanosaeta and Methanobacterium, influencing process performance and stability.
  • Metagenomic analysis identified low metabolic pathway representation for cellulose degradation in cattle manure.
  • The findings support circular economy principles by illustrating efficient biogas production from livestock wastes.

Abstract

Anaerobic digestion (AD) provides significant environmental benefits by converting livestock manures, such as cattle manure (CM) and pig manure (PM), into biogas and nutrient-rich digestate, supporting circular economy principles. However, challenges arise when feedstock overload disrupts microbial balance, leading to reduced methane (CH4) yields and process instability. This study examined the performance of AD using CM and PM with gradually increasing organic loading rates (OLR). At steady state, CH4 yields were 120.32 mL-CH4/g VS for CM and 229 mL-CH4/g VS for PM. The lower yield for CM is attributed to its high cellulose and hemicellulose content, which exceeds 50% and is difficult to degrade. In contrast, PM showed more efficient carbohydrate degradation, resulting in higher CH4 production. Key methanogens, including Methanocorpusculum, Methanosaeta, Methanosarcina, Methanobacterium, and Methanospirillum, were present in both reactors. Metagenomic analysis revealed that pathways for degrading cellulose and hemicellulose were poorly represented in CM, while PM exhibited enhanced total volatile fatty acid metabolism. This study offers valuable insights into the metabolic pathways associated with CM and PM in anaerobic digestion.

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Cite This Study

Kadam et al. (2025) studied this question.

synapsesocial.com/papers/6940223b2d562116f28fb7a9https://doi.org/10.3390/w17243464
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