| Literature DB >> 30956405 |
H G T Nguyen1, L Espinal1, R D van Zee1, M Thommes1,2, B Toman1, M S L Hudson1, E Mangano3, S Brandani3, D P Broom4, M J Benham4, K Cychosz2, P Bertier5, F Yang5, B M Krooss5, R L Siegelman6, M Hakuman7, K Nakai7, A D Ebner8, L Erden8, J A Ritter8, A Moran9, O Talu9, Y Huang10, K S Walton10, P Billemont11, G De Weireld11.
Abstract
This paper reports the results of an international interlaboratory study led by the National Institute of Standards and Technology (NIST) on the measurement of high-pressure surface excess carbon dioxide adsorption isotherms on NIST Reference Material RM 8852 (ammonium ZSM-5 zeolite), at 293.15 K (20 °C) from 1 kPa up to 4.5 MPa. Eleven laboratories participated in this exercise and, for the first time, high-pressure adsorption reference data are reported using a reference material. An empirical reference equation n e x = d ( 1 + exp [ - ln ( P ) + a / b ] ) c , [n ex -surface excess uptake (mmol/g), P-equilibrium pressure (MPa), a = -6.22, b = 1.97, c = 4.73, and d = 3.87] along with the 95% uncertainty interval (U k = 2 = 0.075 mmol/g) were determined for the reference isotherm using a Bayesian, Markov Chain Monte Carlo method. Together, this zeolitic reference material and the associated adsorption data provide a means for laboratories to test and validate high-pressure adsorption equipment and measurements. Recommendations are provided for measuring reliable high-pressure adsorption isotherms using this material, including activation procedures, data processing methods to determine surface excess uptake, and the appropriate equation of state to be used.Entities:
Keywords: Carbon dioxide; High-pressure adsorption isotherm; Interlaboratory study; RM 8852; Reference adsorbent material; Reference isotherm; Surface excess adsorption; ZSM-5
Year: 2018 PMID: 30956405 PMCID: PMC6417222 DOI: 10.1007/s10450-018-9958-x
Source DB: PubMed Journal: Adsorption (Boston) ISSN: 0929-5607 Impact factor: 2.318
Experimental parameters of as-submitted datasets
| Dataset | Measurement method | Gas purity (%) | Sample size (g) | Outgas condition | Sample handling/weighing and transfer |
|---|---|---|---|---|---|
| 1 | Manometric | CO2: 99.999% | 1.182, 1.181 | High-vac, evacuate at RT, ramped 1 K/min to 623 K, held at 623 K for 12 h | Activated ex-situ, then transferred air-free to sample holder in Ar glovebox |
| 2 | Manometric | CO2: 99.999% | 0.659, 0.745 | High-vac, ramped 1 K/min to 623 K, held at 623 K for 12 h | Activated ex-situ, transferred in air to instrument, reactivated at 623 K for 12 h using rough pump in instrument before measurement |
| 3 | Manometric | CO2: 99.998% | 1.202, 1.199 | Vac at RT for 4 h, ramped 2 K/min to 623 K, held for 40 h | Activated ex-situ, then transferred air-free to sample holder in N2 glovebox; once in instrument, evacuate for 2 h before measurement |
| 4 | Manometric | CO2: 99.9995% | ~ 2 | High-vac, evacuate at RT, ramped 1 K/min to 623 K, held at 623 K for at least 12 h | Activated ex-situ, transferred in air to instrument, reactivated at 573 K in instrument |
| 5 | Gravimetric | CO2: 99.999% | ~ 0.040 | High-vac (< 10− 7 kPa), ramped at 5 K/min to 623 K, held for 13.3 h | Activated in-situ |
| 6 | Gravimetric | CO2: 99.999% | 0.174, 0.183 | High-vac, ramped 1 K/min to 623 K, held at 623 K for 14 h | Activated in-situ |
| 7 | Manometric | CO2: 99.999% | ~ 3 | Under vac and He flow, ramped 1 K/min − 2 K/min to 623 K, hold overnight, increased vacuum to 0.034 kPa to eliminate any trace helium | Activated in-situ (final mass calculated based on % weight loss from gravimetric system of dataset #7) |
| Gravimetric | CO2: 99.999% | 0.775 | Under vac and He flow, ramped 1 K/min − 2 K/min to 623 K, held for 4 h, helium vacuumed off to 2 × 10− 5 kPa | Activated in-situ | |
| 8 | Manometric | CO2: 99.999% | 2.231, 2.69 | High-vac, 623 K for 24 h | Activated ex-situ, transferred in air/helium to instrument |
| 9 | Gravimetric | CO2: 99.999% | 0.81, 0.85 | High-vac (< 10− 5 kPa) RT for 1 h, then ramped 1 K/min to 623 K, held for 12 h | Activated in-situ |
| 10 | Gravimetric | CO2: 99.999% | 0.094, 0.095 | High-vac, ramped 1 K/min to 623 K, held at 623 K for 18 h 40 min | Activated in-situ |
| 11 | Gravimetric | CO2: 99.999% | 0.0675, 0.0691 | High-vac (5 × 10− 11 kPa), ramped 1.2 K/min to 623 K, held at 623 K for 16 h | Activated in-situ |
| 12 | Manometric | CO2: 99.999% | 1.3089, 1.147 | Rough vacuum at 353 K for 1 h, ramped 1 K/min to 393 K, held 1 h, ramp 5 K/h to 623 K, held 12 h | Activated ex-situ, transferred in air to instrument |
| 13 | Gravimetric | CO2: 99.999% | ~ 0.1 | High-vac (< 1 × 10− 5 kPa), ramped 0.83 K/min to 423 K, then 1.67 K/min to 623 K, held at 623 K for 16 h | Activated in-situ |
aBlank isotherm was measured using CO2 at 293.15 K using either an empty sample holder or a non-adsorbing sample (Si shot)
bM = manifold or air bath temperature (temperature of reference volume or other components of instruments (not at the analysis site) involved in calculation of excess adsorption)
cF.S. = Full Scale
Fig. 1As-submitted surface excess CO2 adsorption isotherms at 293.15 K (20 °C) for RM 8852 (For low-pressure data and semi-log-scale see Figures S6 and S7.)
Fig. 2a Final surface excess CO2 adsorption isotherms at 293.15 K (20 °C). b Best fit to the isotherm data and 95% uncertainty interval. (For low-pressure data and logarithmic scales see Figures S8–S10. Residuals of the fit are shown in Figure S11.)