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Publication Date:
June 2005
ISSN:
1437-434X
DOI:
10.1515/HF.2000.035

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Holzforschung

International Journal of the Biology, Chemistry, Physics, and Technology of Wood

Editor-in-Chief: Faix, Oskar

Editorial Board Member: Daniel, Geoffrey / Militz, Holger / Rosenau, Thomas / Salmen, Lennart / Sixta, Herbert / Vuorinen, Tapani / Argyropoulos, Dimitris S. / Balakshin, Yu / Barnett, J. R. / Berry, Richard / Burgert, Ingo / Evans, Robert / Evtuguin, Dmitry V. / Frazier, Charles E. / Fukushima, Kazuhiko / Gellerstedt, Göran / Gindl-Altmutter, Wolfgang / Glasser, W. G. / Heitner, Cyril / Holmbom, Bjarne / Isogai, Akira / Kadla, John F. / Kleen, Marjatta / Koch, Gerald / Lachenal, Dominique / Mansfield, Shawn D. / Morrell, J.J. / Niemz, Peter / Pizzi, Antonio / Ragauskas, Arthur J. / Ralph, John / Rice, Robert W. / Salin, Jarl-Gunnar / Schmitt, Uwe / Schultz, Tor P. / Schwanninger, Manfred / Sipilä, Jussi / Tamminen, Tarja / Viikari, Liisa / Welling, Johannes / Willför, Stefan / Yoshihara, Hiroshi

8 Issues per year

Increased IMPACT FACTOR 2011: 1.748
5-year IMPACT FACTOR: 1.838
Rank 2 out of 21 in category Materials Science, Paper & Wood and 10 out of 59 in category Forestry in the 2011 Thomson Reuters Journal Citation Report/Science Edition.

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Issues

A New Air Dehydration Process for Wood Dryers. Part II. Elimination of Organic Compounds

L. Chrusciel / E. Mougel / A. Zoulalian

Citation Information: Holzforschung. Volume 54, Issue 2, Pages 207–212, ISSN (Print) 0018-3830, DOI: 10.1515/HF.2000.035, June 2005

Publication History:
Published Online:
2005-06-01

Summary

In this second part of the study, the ability of the dehydration unit to fix the organic compounds released by wood is evaluated in the particular case of green fir drying at 70° C. The organic compounds are condensed in a bubbling device and analysed with a flame ionisation detector. From these analysis are deduced the mass fraction of organic compounds in the gas phase, the mass flow rate of these compounds released by wood and the one absorbed by TEG. These last results permit to define an equivalent efficiency of the absorber to capture organic compounds present in the drying air.

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