• Title of article

    LCA of second generation bioethanol: A review and some issues to be resolved for good LCA practice

  • Author/Authors

    Wiloso، نويسنده , , Edi Iswanto and Heijungs، نويسنده , , Reinout and de Snoo، نويسنده , , Geert R.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2012
  • Pages
    14
  • From page
    5295
  • To page
    5308
  • Abstract
    This paper aims at reviewing the life cycle assessment (LCA) literature on second generation bioethanol based on lignocellulosic biomass and at identifying issues to be resolved for good LCA practice. Reviews are carried out on respective LCA studies published over the last six years. We use the classification of lignocellulosic biomass to define system boundaries, so that the comparison among LCA results can be thoroughly assessed based on identified system components. A basis for attributing environmental burden for different biomass feedstocks is also suggested. Despite the non-homogeneous systems, we conclude that second generation bioethanol performs better than fossil fuel at least for the two most studied impact categories, net energy output and global warming. For the latter category, carbon sequestration at the biomass generation stage can even consistently offset the GHG emissions from all parts of the life cycle chains at high ethanol percentage (≥85%). The aspect of biogenic carbon and agrochemical input for energy crops and biomass residues, and the effect of removal of the latter from soil have not been treated consistently. In contrast, the exclusion of upstream chain of biomass waste feedstocks is observed in practice. The bioethanol conversion process is mostly based on simultaneous saccharification and co-fermentation, characterized by high yield and low energy input. In this regard, the LCA results tend to under estimate the real impacts of the current technology. The choice of allocation methods strongly influences the final results, particularly when economic value is used as a reference. Substitution of avoided burden seems to be the most popular allocation method in practice, followed by partition based on mass, energy, and economic values.
  • Keywords
    Agriculture , Fermentation , Life cycle assessment , Second generation bioethanol , Lignocellulosic biomass , Transportation biofuel
  • Journal title
    Renewable and Sustainable Energy Reviews
  • Serial Year
    2012
  • Journal title
    Renewable and Sustainable Energy Reviews
  • Record number

    1501368