Biological pre-treatment: Enhancing biogas production using the highly cellulolytic fungus Trichoderma viride

Waste Manag. 2015 Sep:43:98-107. doi: 10.1016/j.wasman.2015.05.011. Epub 2015 May 23.

Abstract

With regard to renewable sources of energy, bioconversion of lignocellulosic biomass has long been recognized as a desirable endeavor. However, the highly heterogeneous structure of lignocellulose restricts the exploitation of its promising potential in biogas plants. Hence, effective pre-treatment methods are decisive prerequisites to overcome these challenges in order to improve the utilization ratio of (ligno) cellulosic substrates during fermentation. In the present study, the application of Trichoderma viride in an aerobic upstream process prior to anaerobic digestion led up to a threefold increase in the yield of methane and total gas in a lab-scale investigation. Due to its highly efficient cellulolytic activities, T. viride seemed to be responsible for an improved nutrient availability that positively influenced the anaerobic microbiocenosis. Aerobic pre-treatment of organic matter with T. viride is therefore a promising solution to achieve higher methane yields and degradation performances without any additional energy demand, nor undesired by-product inhibition.

Keywords: Anaerobic digestion; Biogas; Biological pre-treatment; Lignocellulose; Methane; Trichoderma viride.

MeSH terms

  • Anaerobiosis
  • Biodegradation, Environmental
  • Biofuels*
  • Biomass
  • Cellulose / chemistry*
  • Environment
  • Fermentation*
  • Gases
  • Hydrogen-Ion Concentration
  • Hydrolysis
  • Lignin / chemistry
  • Methane / chemistry
  • Temperature
  • Trichoderma / metabolism*

Substances

  • Biofuels
  • Gases
  • lignocellulose
  • Cellulose
  • Lignin
  • Methane