Related Experiment Video
Updated: Jan 13, 2026

Author Spotlight: Scaling Microalgal Biotechnology for Enhanced Biomethane Production
Published on: March 22, 2024
Extensive study on biogas trace compounds from agricultural and municipal biomass residues for downstream catalytic
Selina Nieß1, Mathias Stur1, Ute Mikow2
1DBFZ - Deutsches Biomasseforschungszentrum gGmbH (German Biomass Research Center), Torgauer Straße 116, 04347 Leipzig, Germany.
Abstract:
This study used quantitative biogas measurements from four full-scale biogas plants to determine which trace components can be expected in biogas from biogenic agricultural or municipal residues. The objective was to identify trace compounds that could damage the catalyst when biogas is used as a feedstock for a catalytic conversion. Knowing the exact composition of the biogas, including for example all sulfur-containing molecules, is therefore essential for the process's operational expenditures (OPEX). The results of this investigation add to a database of fully measured biogases and can be used to select suitable biogas purification steps. Trace compounds found in all measured biogas samples were ethanol, acetone, toluene, alpha-pinene and 3-methylfuran. However, biogases from different substrates contain distinctive trace components. The biogas from organic waste shows the highest amount of S-containing molecules (up to 14.7ppm in total), while the biogas from wastewater sludge shows higher amounts of siloxanes (50 mg m-3STP) and the biogases from agricultural waste contain oxygenates like acetone and 2-butanone. Measurements taken at various points along the process chain indicate that activated carbon is sufficient for removing most of the trace components from biogas. However, it was observed in one plant that the activated carbon must be replaced before it reaches its adsorption limit to avoid the desorption of volatile organic compounds. Biogas or the biogenic CO2 are well-suited to be used in downstream processes, but analytical monitoring of the biogas composition and a suitable connection between plant and downstream process are required.
Related Concept Videos
Environmental Applications of Microorganisms
Bioremediation
Lipid Catabolism

