Establishing ZIF‐8 as a reference material for hydrogen cryoadsorption: An interlaboratory study

Author:

Villajos Jose A.12ORCID,Balderas‐Xicohténcatl Rafael34ORCID,Al Shakhs Ali N.5,Berenguer‐Murcia Ángel6ORCID,Buckley Craig E.7,Cazorla‐Amorós Diego6ORCID,Charalambopoulou Georgia8ORCID,Couturas Fabrice9,Cuevas Fermin9ORCID,Fairen‐Jimenez David5ORCID,Heinselman Karen N.10ORCID,Humphries Terry D.7ORCID,Kaskel Stefan11ORCID,Kim Hyunlim12,Marco‐Lozar Juan P.13,Oh Hyunchul12ORCID,Parilla Philip A.10ORCID,Paskevicius Mark7ORCID,Senkovska Irena11ORCID,Shulda Sarah10ORCID,Silvestre‐Albero Joaquin6ORCID,Steriotis Theodore8ORCID,Tampaxis Christos8ORCID,Hirscher Michael314ORCID,Maiwald Michael1ORCID

Affiliation:

1. Bundesanstalt für Materialforschung und -prüfung (BAM) Berlin Germany

2. Centro Ibérico de Investigación en Almacenamiento Energético (CIIAE) Cáceres Spain

3. Max Planck Institute for Intelligent Systems Stuttgart Germany

4. Current address: Bauhaus Luftfahrt e.V. Münnchen Germany

5. The Adsorption & Advanced Materials Laboratory (A2ML), Department of Chemical Engineering & Biotechnology, University of Cambridge Cambridge UK

6. Universidad de Alicante. Alicante Spain

7. Curtin University Perth Australia

8. National Center for Scientific Research “Demokritos” (NCSRD) Athens Greece

9. Université Paris Est Creteil (CNRS-ICMPE-UMR7182) Thiais France

10. National Renewable Energy Laboratory (NREL) Denver USA

11. Technische Universität Dresden (TUD) Dresden Germany

12. Ulsan National Institute of Science and Technology (UNIST) Ulsan South Korea

13. G2MTech. Alicante Spain

14. Advanced Institute for Materials Research (WPI-AIMR) Tohoku University Sendai Japan

Abstract

AbstractHydrogen storage by cryoadsorption on porous materials has the advantages of low material cost, safety, fast kinetics, and high cyclic stability. The further development of this technology requires reliable data on the H2 uptake of the adsorbents, however, even for activated carbons the values between different laboratories show sometimes large discrepancies. So far no reference material for hydrogen cryoadsorption is available. The metal‐organic framework ZIF‐8 is an ideal material possessing high thermal, chemical, and mechanical stability that reduces degradation during handling and activation. Here, we distributed ZIF‐8 pellets synthesized by extrusion to 9 laboratories equipped with 15 different experimental setups including gravimetric and volumetric analyzers. The gravimetric H2 uptake of the pellets was measured at 77 K and up to 100 bar showing a high reproducibility between the different laboratories, with a small relative standard deviation of 3–4 % between pressures of 10–100 bar. The effect of operating variables like the amount of sample or analysis temperature was evaluated, remarking the calibration of devices and other correction procedures as the most significant deviation sources. Overall, the reproducible hydrogen cryoadsorption measurements indicate the robustness of the ZIF‐8 pellets, which we want to propose as a reference material.

Funder

U.S. Department of Energy

Publisher

Wiley

Subject

Physical and Theoretical Chemistry,Atomic and Molecular Physics, and Optics

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