Investigation of the pyrolysis mechanisms of cellobiose in the presence of a polysiloxane
Author:
Publisher
Elsevier BV
Subject
Analytical Chemistry,Fuel Technology
Reference28 articles.
1. P. Olry, H. Plaisantin, S. Loison, R. Pailler, Patent WO 01/42544 A2 (2000).
2. H. Plaisantin, Ph.D. Thesis, University Bordeaux 1, 1999.
3. Silicones et Industry;Tomanek,1990
4. The Siloxane Bond, Studies in Soviet Science;Voronkov,1978
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