Startseite Identification of Cupric and Cuprous Copper in Copper Naphthenate-Treated Wood by X-Ray Photoelectron Spectroscopy
Artikel
Lizenziert
Nicht lizenziert Erfordert eine Authentifizierung

Identification of Cupric and Cuprous Copper in Copper Naphthenate-Treated Wood by X-Ray Photoelectron Spectroscopy

  • P. Kamdem , J. Zhang und A. Adnot
Veröffentlicht/Copyright: 1. Juni 2005
Veröffentlichen auch Sie bei De Gruyter Brill
Holzforschung
Aus der Zeitschrift Band 55 Heft 1

Summary

X-ray photoelectron spectroscopy (XPS) was used to monitor the modification on copper naphthenate (Cu-N) treated Southern pine and the effect of a post treatment steaming on Cu-N treated samples. The atomic ratio of oxygen to carbon (O1s/C1s) decreases with Cu-N treatment, confirming the coverage of the sample surface with Cu-N, which is rich in -CH2- groups. XPS spectra and Auger parameters were successively used to identify and quantify Cu (I) and Cu (II) on the surface of Cu-N treated samples. The peak at 935 eV and the presence of shake up satellites are a good indication of the presence of cupric copper, while the peak at 933 eV and the disappearance of shake-up satellites are attributed to the presence of cuprous copper. The post-treatment steaming of Cu-N treated Southern pine cubes results in the conversion of 52 percent of the cupric copper into cuprous copper on the wood surface.

:
Published Online: 2005-06-01
Published in Print: 2001-12-14

Copyright © 2001 by Walter de Gruyter GmbH & Co. KG

Artikel in diesem Heft

  1. Genetic Variation in the Decay Resistance of Siberian Larch (Larix sibirica Ledeb.) Wood
  2. Chromated Copper Arsenate Preservative Treatment of North American Hardwoods. Part 2. CCA Leaching Performance
  3. Interaction of Copper-Containing Preservatives with Wood. Part 1. Mechanism of the Interaction of Copper with Cellulose
  4. Identification of Cupric and Cuprous Copper in Copper Naphthenate-Treated Wood by X-Ray Photoelectron Spectroscopy
  5. Measurement of Wood Wettability by the Wilhelmy Method. Part 1. Contamination of Probe Liquids by Extractives
  6. Measurement of Wood Wettability by the Wilhelmy Method. Part 2. Determination of Apparent Contact Angles
  7. Biomechanical Pulping of Agave sisalana
  8. Oxidation of Benzyl Alcohols by the Laccase-Mediator System (LMS) a Comprehensive Kinetic Description
  9. Chemical Modification of Wood by Polyglycerol/Maleic Anhydride Treatment
  10. Relationship between Released Strain and Growth Rate in 39 Year-Old Tectona grandis Planted in Indonesia
  11. Reduction of Residual Stresses in Medium Density Fibreboard. Part 1. Taguchi Analysis
  12. Reduction of Residual Stresses in Medium Density Fibreboard. Part 2. Effects on Thickness Swell and Other Properties
  13. Evaluation of Pettys Nonlinear Model in Wood Permeability Measurement
  14. Dielectric Relaxation Based on Adsorbed Water in Wood Cell Wall under Non-Equilibrium State 2
  15. Preparation and Properties of Acetylated and Propionylated Wood-Silicate Composite
  16. The Flakes Alignment Efficiency and Orthotropic Properties of Oriented Strand Board
  17. Walter Liese 75 Years Young
  18. Literature Reports
Heruntergeladen am 19.9.2025 von https://www.degruyterbrill.com/document/doi/10.1515/HF.2001.004/html
Button zum nach oben scrollen