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March 10, 2026ChemBioEng Reviews0 citations

Microaeration Process Design, Control, and Monitoring for Biogas Desulfurization in Anaerobic Digestion

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SKSamiullah KhaskheliAMAnqi MouBDBipro Ranjan Dhar

Key Points

  • This review aims to evaluate the effectiveness and challenges of microaeration for biogas desulfurization in anaerobic digestion systems.
  • Critical assessment of microaeration parameters like injection locations and oxygen sources.
  • Evaluation of challenges such as methanogenic inhibition and biogas dilution.
  • Review of process control techniques, including PID-controlled systems and real-time monitoring tools.
  • Identified inconsistencies in hydrolysis, volatile solids reduction, and methane yield due to microaeration.
  • Highlighted operational complexities related to sulfur removal and oxygen balancing.
  • Discussed the potential for process automation but noted that development is still in early stages.

Abstract

ABSTRACT Microaeration has emerged as an effective in situ approach for biogas desulfurization in anaerobic digestion (AD). This review critically assessed the effects of key microaeration parameters, including injection locations (liquid vs. gas phase), oxygen source (air vs. pure oxygen), dosage, and process control and monitoring techniques. This review identified several challenges to its large‐scale implementation, including a lack of optimal process design and limited economic analysis. Other key challenges include balancing oxygen injections to prevent methanogenic inhibition and organic co‐oxidation, managing biogas dilution by residual oxygen and nitrogen, and the operational complexities associated with elemental sulfur removal. Proportional–integral–derivative (PID)‐controlled systems that utilize oxidation‐reduction potential and H 2 S feedback have strong potential for process automation; however, real‐time monitoring tools and process control strategies are still in early stages of development. Moreover, its impact on hydrolysis, volatile solids reduction, and methane yield has been inconsistent. Addressing these gaps is crucial for the wide‐scale application in AD facilities.

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Cite This Study

Khaskheli et al. (2026) studied this question.

synapsesocial.com/papers/69af955970916d39fea4cbfchttps://doi.org/10.1002/cben.70046
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