Title: Reference surface excess isotherms for carbon dioxide adsorption on ammonium ZSM-5 at various temperatures

Journal Article · · Adsorption

Abstract This work is part of the effort at the Facility for Adsorbent Characterization and Testing (FACT lab) at the National Institute of Standards and Technology (NIST) to develop reference materials, reference data, and measurement best practices for adsorption metrology. High-pressure surface excess isotherms for CO 2 adsorption on NIST Reference Material 8852 (ammonium ZSM-5) at 15 °C, 25 °C, and 35 °C are reported, expanding on a FACT Lab-organized international interlaboratory study on this sorbent/sorbate pair at 20 °C. The range of temperatures of the present study is of interest for many CO 2 adsorption measurements and applications. Measurements were made using five different adsorption instruments, both manometric and gravimetric. Excellent agreement in the measured isotherms among the instruments was found. An empirical reference equation of the form, $$$${n}_{ex,ref}({P}_{eq})=\frac{c}{\{{1+\mathrm{exp}[\left(-\mathrm{ln}\left(P\right)+a\right)/b ]\}}^{b }} ,$$$$ n e x , r e f ( P eq ) = c { 1 + exp [ - ln P + a / b ] } b , [ n ex,ref is surface excess uptake (mmol/g); P eq is equilibrium pressure (MPa); P is ( P eq )/(1 MPa)]; a , b , c are constants] and the 95% uncertainty interval were determined for the isotherms at each of the temperatures. Lastly, the isosteric heat of adsorption is estimated from absolute isotherms derived from the surface excess reference data.

Sponsoring Organization:
USDOE Advanced Research Projects Agency - Energy (ARPA-E)
OSTI ID:
1854651
Journal Information:
Adsorption, Journal Name: Adsorption Journal Issue: 1-2 Vol. 28; ISSN 0929-5607
Publisher:
Springer Science + Business MediaCopyright Statement
Country of Publication:
Netherlands
Language:
English

References (35)

Carbon Dioxide Capture: Prospects for New Materials journal July 2010
An International Laboratory Comparison Study of Volumetric and Gravimetric Hydrogen Adsorption Measurements journal June 2019
An international multi-laboratory investigation of carbon-based hydrogen sorbent materials journal January 2016
Physical adsorption of gases: the case for absolute adsorption as the basis for thermodynamic analysis journal March 2014
A reference high-pressure CO2 adsorption isotherm for ammonium ZSM-5 zeolite: results of an interlaboratory study journal July 2018
A reference high-pressure CH4 adsorption isotherm for zeolite Y: results of an interlaboratory study journal September 2020
European inter-laboratory comparison of high pressure CO2 sorption isotherms. I: Activated carbon journal November 2009
Inter-laboratory comparison II: CO2 isotherms measured on moisture-equilibrated Argonne premium coals at 55 °C and up to 15 MPa journal November 2007
European inter-laboratory comparison of high pressure CO2 sorption isotherms II: Natural coals journal November 2010
First international inter-laboratory comparison of high-pressure CH 4 , CO 2 and C 2 H 6 sorption isotherms on carbonaceous shales journal October 2014
A Round Robin characterisation of the hydrogen sorption properties of a carbon based material journal April 2009
A Round Robin Test exercise on hydrogen absorption/desorption properties of a magnesium hydride based material journal May 2013
Pitfalls in the characterisation of the hydrogen sorption properties of materials journal December 2017
Characterization of chemical properties, unit cell parameters and particle size distribution of three zeolite reference materials: RM 8850 – zeolite Y, RM 8851 – zeolite A and RM 8852 – ammonium ZSM-5 zeolite journal January 2008
How Reproducible Are Isotherm Measurements in Metal–Organic Frameworks? journal November 2017
A Strong Test of Atomically Detailed Models of Molecular Adsorption in Zeolites Using Multilaboratory Experimental Data for CO 2 Adsorption in Ammonium ZSM-5 journal December 2019
Understanding Material Characteristics through Signature Traits from Helium Pycnometry journal January 2019
An Inter-laboratory Comparison of CO 2 Isotherms Measured on Argonne Premium Coal Samples journal July 2004
Measurement, Standards, and Data Needs for CO 2 Capture Materials: A Critical Review journal October 2013
Pure and Pseudo-pure Fluid Thermophysical Property Evaluation and the Open-Source Thermophysical Property Library CoolProp journal January 2014
Isosteric Heat of Adsorption:  Theory and Experiment journal August 1999
Adsorbent Helium Density Measurement and Its Effect on Adsorption Isotherms at High Pressure journal February 1997
Calorimetric Heats of Adsorption and Adsorption Isotherms. 2. O 2 , N 2 , Ar, CO 2 , CH 4 , C 2 H 6 , and SF 6 on NaX, H-ZSM-5, and Na-ZSM-5 Zeolites journal January 1996
Structure of synthetic zeolite ZSM-5 journal March 1978
Evaluating metal–organic frameworks for natural gas storage journal January 2014
Recent advances in solid sorbents for CO 2 capture and new development trends journal January 2014
Irreproducibility in hydrogen storage material research journal January 2016
A New Equation of State for Carbon Dioxide Covering the Fluid Region from the Triple‐Point Temperature to 1100 K at Pressures up to 800 MPa journal November 1996
Assessment of measurement uncertainty via observation equations journal November 2007
Experimental aspects of buoyancy correction in measuring reliable high-pressure excess adsorption isotherms using the gravimetric method journal November 2017
Bayesian Data Analysis book November 2013
Temperature Dependence of the Isosteric Heat of Adsorption journal December 2001
Materials challenges in carbon-mitigation technologies journal April 2012
NIST/ARPA-E Database of Novel and Emerging Adsorbent Materials dataset January 2020
A Review of CO2 Capture by Absorption and Adsorption journal January 2012

Similar Records

Hint of a new scalar interaction in LHCb data?
Journal Article · 2024 · European Physical Journal. C, Particles and Fields (Online) · OSTI ID:2370455

Semileptonic form factors for $$B\rightarrow D^*\ell \nu $$ at nonzero recoil from $$2+1$$-flavor lattice QCD: Fermilab Lattice and MILC Collaborations
Journal Article · 2022 · European Physical Journal. C, Particles and Fields (Online) · OSTI ID:1905356

Non-analyticity in holographic complexity near critical points
Journal Article · 2023 · Journal of Physics. A, Mathematical and Theoretical · OSTI ID:2419759

Related Subjects