Skip to main navigation Skip to search Skip to main content

Biogas digestates based on lignin-rich feedstock – potential as fertilizer and soil amendment

  • Susanne Eich-Greatorex
  • , Vivekanand Vivekanand
  • , Anna Schnürer
  • , Trond Børresen
  • , Trine A. Sogn

    Publication: Contribution to journalJournal articlepeer-review

    Abstract

    With advances in biogas technology, lignocellulosic material may be increasingly included in feedstock due to the abundance of raw materials. The main goal of this study was to evaluate fertilizing and soil amendment effects of digestates based on lignin-rich feedstock. The digestates originated from reactors fed with manure co-digested with Salix, wheat straw or sugarcane bagasse, respectively. In pot experiments with three different soils, Italian ryegrass and reed canary grass were grown with 120 kg ha(-1) total nitrogen or 150 kg ha(-1) available nitrogen, respectively, given as either mineral fertilizer or digestate. Soil chemical and physical characteristics were determined after ended experiments. Additionally, an incubation study was carried out to estimate N mineralization from one digestate over time. Digestate addition resulted in similar yields compared to mineral fertilizer, varying from 0.5 (loam) to 1 kg dry matter m(-2) (silt) for Italian ryegrass and 1.2 (loam) to 2.3 kg m(-2) (silt) for reed canary grass. Digestates contributed to a favourable pH for plant growth, reduced bulk density in the loam and improved water retention characteristics in the sand. Biogas digestates based on lignin-rich feedstock appear promising as fertilizers and for soil amelioration but results have to be verified in field experiments.
    Original languageEnglish
    Pages (from-to)347-359
    Number of pages13
    JournalArchives of Agronomy and Soil Science
    Volume64
    Issue number3
    DOIs
    Publication statusPublished - 2018

    Keywords

    • Lignocellulosic material
    • biomass production
    • Italian ryegrass
    • reed canary grass
    • soil physical properties

    Cite this