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Water vapor absorption data for western larch (Larix occidentalis Nutt.): Results of a worldwide interlaboratory study

  • Samuel L. Zelinka (Creator)
  • Samuel V. Glass (Creator)
  • Natalia Farkas (Creator)
  • Emil Engelund Thybring (Creator)
  • Michael Altgen (Norwegian Institute of Bioeconomy Research) (Creator)
  • Lauri Rautkari (Creator)
  • Simon Curling (Creator)
  • Jinzhen Cao (Creator)
  • Yujiao Wang (Creator)
  • Tina Künniger (Creator)
  • Gustav Nyström (Creator)
  • Christopher Hubert Dreimol (Creator)
  • Ingo Burgert (Creator)
  • Mark G. Roper (Creator)
  • Darren P. Broom (Creator)
  • Matthew Schwarzkopf (Creator)
  • Arief Yudhanto (Creator)
  • Mohammad Subah (Creator)
  • Gilles Lubineau (Creator)
  • Maria Fredriksson-Ahomaa (Creator)
  • Wiesław Olek (Creator)
  • Jerzy Majka (Creator)
  • Nanna Bjerregaard Pedersen (Creator)
  • Daniel J. Burnett (Creator)
  • Armando R. Garcia (Creator)
  • Frieder Dreisbach (Creator)
  • Louis Waguespack (Creator)
  • Jennifer Schott (Creator)
  • Luis G. Esteban (Creator)
  • Alberto Garcia-Iruela (Creator)
  • Thibaut Colinart (Creator)
  • Romain Rémond (Creator)
  • Brahim Mazian (Creator)
  • Patrick Perre (Creator)
  • Lukas Emmerich (Creator)

Tietoaineisto

Description

Automated sorption balances are widely used for characterizing the interaction of water vapor with hygroscopic materials. This data publication is part of an interlaboratory study investigating the stability and performance of automated sorption balances. For this portion of the study, we investigated the mass stability of western larch (Larix occidentalis Nutt.) wood samples held at constant relative humidity (RH) for seven to ten days after a step change had been included. The reason for the long hold times was to collect data to “operational equilibrium” where the change in mass is on the order of the inherent operational stability of the instrument. A total of 80 datasets were acquired from 21 laboratories around the world, collected between February 2022 and October 2024, covering absorption with final RH levels ranging from 10% to 95%. Measurements within each dataset include the time, mass, relative humidity, and temperature data for each sorption step of interest.

These data were collected using funding from the U.S. Government and can be used without additional permissions or fees. If you use these data in a publication, presentation, or other research product please use the following citation:

Zelinka, Samuel L.; Glass, Samuel V.; Farkas, Natalia; Thybring, Emil E.; Altgen, Michael; Rautkari, Lauri; Curling, Simon; Cao, Jinzhen; Wang, Yujiao; Künniger, Tina; Nyström, Gustav; Dreimol, Christopher Hubert; Burgert, Ingo; Roper, Mark G.; Broom, Darren P.; Schwarzkopf, Matthew; Yudhanto, Arief; Subah, Mohammad; Lubineau, Gilles; Fredriksson, Maria; Olek, Wiesław; Majka, Jerzy; Pedersen, Nanna Bjerregaard; Burnett, Daniel J.; Garcia, Armando R.; Dreisbach, Frieder; Waguespack, Louis; Schott, Jennifer; Esteban, Luis G.; García-Iruela, Alberto; Colinart, Thibaut; Rémond, Romain; Mazian, Brahim; Perré, Patrick; Emmerich, Lukas. 2025. Water vapor absorption data for western larch (Larix occidentalis Nutt.): Results of a worldwide interlaboratory study. Fort Collins, CO: Forest Service Research Data Archive. https://doi.org/10.2737/RDS-2025-0010
Koska saatavilla2025
JulkaisijaForest Service Research Data Archive
Tietojen luontipäivämäärähelmik. 2022 - lokak. 2024

Dataset Licences

  • Other
  • Interlaboratory study of automated sorption measurements in wood: method for correcting systematic errors with the commonly used 0.002% min−1 stop criterion

    Zelinka, S. L., Glass, S. V., Farkas, N., Thybring, E. E., Altgen, M., Rautkari, L., Curling, S., Cao, J., Wang, Y., Künniger, T., Nyström, G., Dreimol, C. H., Burgert, I., Roper, M. G., Broom, D. P., Schwarzkopf, M., Yudhanto, A., Subah, M., Lubineau, G. & Fredriksson, M. & 15 muuta, Olek, W., Majka, J., Pedersen, N. B., Burnett, D. J., Garcia, A. R., Dreisbach, F., Waguespack, L., Schott, J., Esteban, L. G., García‑Iruela, A., Colinart, T., Rémond, R., Mazian, B., Perré, P. & Emmerich, L., 4 lokak. 2025, julkaisussa: Adsorption. 31, 7, 21 Sivumäärä, 99.

    Tutkimustuotos: LehtiartikkeliArticleScientificvertaisarvioitu

    Open access
    Tiedosto
    3 Lataukset (Pure)
  • Interlaboratory study of the quality of water vapor sorption data for wood from automated sorption balances

    Zelinka, S. L., Glass, S. V., Farkas, N., Thybring, E. E., Altgen, M., Rautkari, L., Curling, S., Cao, J., Wang, Y., Künniger, T., Nyström, G., Dreimol, C. H., Burgert, I., Roper, M. G., Broom, D. P., Schwarzkopf, M., Yudhanto, A., Subah, M., Lubineau, G. & Fredriksson, M. & 15 muuta, Olek, W., Majka, J., Pedersen, N. B., Burnett, D. J., Garcia, A. R., Dreisbach, F., Waguespack, L., Schott, J., Esteban, L. G., García‑Iruela, A., Colinart, T., Rémond, R., Mazian, B., Perré, P. & Emmerich, L., 14 huhtik. 2025, julkaisussa: Adsorption. 31, 4, 17 Sivumäärä, 74.

    Tutkimustuotos: LehtiartikkeliArticleScientificvertaisarvioitu

    Open access
    Tiedosto
    2 Sitaatiot (Scopus)
    46 Lataukset (Pure)

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