• Title of article

    Optimization of platinum filament micropyrolyzer for studying primary decomposition in cellulose pyrolysis

  • Author/Authors

    Ronsse، نويسنده , , Frederik and Dalluge، نويسنده , , Dustin and Prins، نويسنده , , Wolter and Brown، نويسنده , , Robert C.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2012
  • Pages
    10
  • From page
    247
  • To page
    256
  • Abstract
    In this study, a systematic and quantitative analysis of the yield and composition of primary decomposition products produced during pyrolysis of cellulose using a platinum filament type micropyrolyzer was performed. It demonstrates the importance of proper selection of the operating conditions for the filament type micropyrolyzer. A method was developed to optimize micropyrolysis operational parameters with respect to maximizing the yield of certain primary decomposition products, more specifically, levoglucosan. The results indicate that composition and yield of the pyrolysis vapors are highly sensitive to any parameter which directly or indirectly affects heat transfer during micropyrolysis. In this regard, filament type micropyrolyzers were shown to be more sensitive than microfurnace based micropyrolyzers. Parameters which have to be considered for method development and optimization in filament type micropyrolyzers are sample size, pyrolysis temperature, difference between actual (i.e. sample) and set-point (i.e. filament) temperature, sample particle size and the potential occurrence of cold spots in the system, promoting condensation. With proper parameter selection and optimization, yields in primary decomposition products are similar to microfurnace pyrolyzers with good repeatability.
  • Keywords
    Micropyrolysis , Quantitative pyrolysis , optimization , Levoglucosan , Cellulose pyrolysis , glycolaldehyde
  • Journal title
    Journal of Analytical and Applied Pyrolysis
  • Serial Year
    2012
  • Journal title
    Journal of Analytical and Applied Pyrolysis
  • Record number

    2128146