Sorption surfaces and energies of untreated and thermally modified wood evaluated by means of excess surface work (ESW)
Author:
Publisher
Springer Science and Business Media LLC
Subject
Industrial and Manufacturing Engineering,Plant Science,General Materials Science,Forestry
Link
http://link.springer.com/article/10.1007/s00226-018-1021-2/fulltext.html
Reference41 articles.
1. Adolphs J (2007) Excess surface work-A modelless way of getting surface energies and specific surface areas directly from sorption isotherms. Appl Sur Sci 253:5645–5649
2. Adolphs J, Setzer MJ (1996a) A model to describe adsorption isotherms. J Colloid Interface Sci 180:70–76
3. Adolphs J, Setzer MJ (1996b) Energetic Classification of Adsorption Isotherms. J Colloid Interface Sci 184:443–448
4. Adolphs J, Setzer MJ (1998) Description of gas adsorption isotherms on porous and dispersed systems with the excess surface work model. J Colloid Interface Sci 207:349–354
5. Bächle H, Zimmer B, Windeisen E, Wegener G (2010) Evaluation of thermally modified beech and spruce wood and their properties by FT-NIR spectroscopy. Wood Sci Technol 44:421–433
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1. Evaluation of the colour parameters on hygroscopicity and dimensional stability of thermally modified Populus tomentosa Carr.;Industrial Crops and Products;2023-12
2. Mesoporosity of Delignified Wood Investigated by Water Vapor Sorption;ACS Omega;2019-07-22
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