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Porosity and pore size distribution of native and delignified beech wood determined by mercury intrusion porosimetry
Vitas, S., Segmehl, J. S., Burgert, I., & Cabane, E. (2019). Porosity and pore size distribution of native and delignified beech wood determined by mercury intrusion porosimetry. Materials, 12(3), 416 (13 pp.). https://doi.org/10.3390/ma12030416
Rejection of micron-sized particles using beech wood xylem
Vitas, S., Beckmann, P., Skibinski, B., Goldhahn, C., Muff, L. F., & Cabane, E. (2019). Rejection of micron-sized particles using beech wood xylem. Environmental Science: Water Research and Technology, 5(5), 944-955. https://doi.org/10.1039/C8EW00774H
Beech wood cross sections as natural templates to fabricate superhydrophobic surfaces
Wang, Y., Vitas, S., Burgert, I., & Cabane, E. (2019). Beech wood cross sections as natural templates to fabricate superhydrophobic surfaces. Wood Science and Technology, 53(5), 985-999. https://doi.org/10.1007/s00226-019-01113-z
Functional lignocellulosic material for the remediation of copper(II) ions from water: towards the design of a wood filter
Vitas, S., Keplinger, T., Reichholf, N., Figi, R., & Cabane, E. (2018). Functional lignocellulosic material for the remediation of copper(II) ions from water: towards the design of a wood filter. Journal of Hazardous Materials, 355, 119-127. https://doi.org/10.1016/j.jhazmat.2018.05.015