Liste Tripelpunkt: Druck (ptrp) in bar der Elemente

# [|] Stoffname [|] Formel [|] Wert / Einheit [|] Bemerkungen

018 Argon Ar 0.69 bar [1] 69 kPa
033 Arsen, grau As 37 bar [1] 3.7 MPa
035 Brom Br2 0.0588 bar [2] 44.1 mmHg
017 Chlor Cl2 0.01392 bar [3]
009 Fluor F2 0.00252 bar [4] 0.252 kPa
053 Iod I2 0.0121 bar [5] 12.1 kPa
006 Kohlenstoff, Graphit C 103 bar [1] 10.3 MPa
036 Krypton Kr 0.7315 bar [6]
010 Neon Ne 0.43 bar [1] 43 kPa
080 Quecksilber Hg 1.7·10-9 bar [7] 1.7e-10 MPa
086 Radon Rn 0.667 bar [8] 66.7 kPa
008 Sauerstoff O2 0.148 bar [9] 14.8 kPa
007 Stickstoff N2 0.12523 bar [10] 12.523 kPa
001 Wasserstoff H2 0.072 bar [1] 7.2 kPa
054 Xenon Xe 0.816 bar [1] 81.6 kPa

Tabelle 1: Eigenschaftsliste (Tripelpunkt: Druck) für alle Elemente in der Datenbank.

Quellen: [1] Lide, D. R. (2005). Melting, Boiling, Triple, and Critical Point Temperatures of the Elements, in: CRC Handbook of Chemistry and Physics, Internet Version 2005. CRC Press Boca Raton.
[2] Dean, J. A. (1999). Lange's handbook of chemistry. McGraw-Hill. Inc., New York
[3] National Institute of Standards and Technology. (2025). Chlorine- NIST Chemistry WebBook. [Website]. https://webbook.nist.gov/cgi/cbook.cgi?ID=C7782505&Mask=69F#Thermo-Phase
[4] Straty, G. C., & Prydz, R. (1970). Melting curve and triple-point properties of fluorine. Physics Letters A, 31(6), 301-302. https://doi.org/10.1016/0375-9601(70)90868-6
[5] Pavese, F. (2022). The triple point temperature of iodine. The Journal of Chemical Thermodynamics, 165, 106639. https://doi.org/10.1016/j.jct.2021.106639
[6] National Institute of Standards and Technology. (2025). Krypton - NIST Chemistry WebBook. [Website]. https://webbook.nist.gov/cgi/cbook.cgi?ID=C7439-90-9&Mask=4#ref-1
[7] Tew, W. L., & Quelhas, K. N. (2018). Realizations of the triple point of sulfur hexafluoride in transportable and refillable cells. Journal of Research of the National Institute of Standards and Technology, 123, 1. https://doi.org/10.6028/jres.123.013
[8] Ferreira, A. G. M., & Lobo, L. Q. (2007). On the vapour pressure of radon. The Journal of Chemical Thermodynamics, 39(10), 1404-1406. https://doi.org/10.1016/j.jct.2007.03.017
[9] Kirschner, M. J., Alekseev, A., Dowy, S., Grahl, M., Jansson, L., Keil, P., ... & Windmeier, C. (2000). Oxygen. Ullmann's encyclopedia of industrial chemistry, 1-32. https://doi.org/10.1002/14356007.a18_329
[10] Span, R., Lemmon, E. W., Jacobsen, R. T., Wagner, W., & Yokozeki, A. (2000). A reference equation of state for the thermodynamic properties of nitrogen for temperatures from 63.151 to 1000 K and pressures to 2200 MPa. Journal of physical and chemical reference data, 29(6), 1361-1433. https://doi.org/10.1063/1.1349047