PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
March 5, 2026Gases2 citationsOpen Access

Energy and Exergy Analysis of SNG Production from Syngas Derived from Agricultural Residues in Bolívar, Colombia

View Full Paper
ABAna BuelvasDBDeibys BarretoHRHermes Ramirez-Leon

Key Points

  • This research aims to assess the thermodynamic performance of synthetic natural gas synthesis from agricultural residues in Bolívar, Colombia.
  • Simulated SNG production process using Aspen Plus®
  • Integrated syngas data with methanation under set equilibrium conditions
  • Performed energy and exergy analyses to evaluate efficiencies and irreversibilities
  • Carbon conversion rates of 48.3% for empty fruit bunches and 47.4% for rice husk
  • Produced synthetic natural gas with 96% methane suitable for grid injection
  • Achieved energy efficiencies of 71.9% for EFB and 71.0% for RH
  • Exergy efficiencies were found to be 87.2% for EFB and 82.9% for RH
  • Identified major irreversibilities in methanation and CO2 removal processes

Abstract

Synthetic natural gas (SNG) production from biomass residues represents a promising strategy to reduce greenhouse gas emissions and enhance energy security in regions with abundant agricultural waste. This study evaluates the thermodynamic performance of SNG synthesis from rice husk (RH) and empty fruit bunches (EFB) bio-oils, major residues in the department of Bolívar, Colombia. The process was simulated in Aspen Plus®, integrating syngas data and methanation under equilibrium conditions at 320 °C and 30 bar, complemented by hydrogen injection via alkaline electrolysis to maintain an H2/CO ratio above 3. Energy and exergy analyses were performed to quantify efficiencies and irreversibilities. Results indicate carbon conversion rates of 48.3% for EFB and 47.4% for RH, producing SNG with 96% CH4 suitable for grid injection. Energy efficiencies reached 71.9% and 71.0%, while exergy efficiencies were 87.2% and 82.9%, respectively, aligning with or surpassing literature benchmarks. The main irreversibilities occurred in methanation and CO2 removal, highlighting thermal integration and gas recycling as key improvement strategies. These findings demonstrate the potential of leveraging local biomass for clean energy production and support the development of Power-to-Gas systems in Colombia.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Buelvas et al. (2026) studied this question.

synapsesocial.com/papers/69a91df9d6127c7a504c1594https://doi.org/10.3390/gases6010014
Ask AI
Helpful
Bookmark
Share
View Full Paper