A microporous metal–organic framework with commensurate adsorption and highly selective separation of xenon

Author:

Xiong Shunshun1234ORCID,Gong Youjin1234,Hu Shuanglin1234ORCID,Wu Xiaonan1234,Li Wei1234,He Yabing56789ORCID,Chen Banglin10111213ORCID,Wang Xiaolin1234

Affiliation:

1. Institute of Nuclear Physics and Chemistry

2. China Academy of Engineering Physics

3. Mianyang

4. P. R. China

5. Key Laboratory of the Ministry of Education for Advanced Catalysis Materials

6. Institute of Physical Chemistry

7. Zhejiang Normal University

8. Jinhua 321004

9. China

10. Department of Chemistry

11. University of Texas at San Antonio

12. San Antonio

13. USA

Abstract

A microporous metal–organic framework with a suitable pore/cage-like structure of a precise size matching well with the xenon atom exhibits a commensurate adsorption phenomenon of Xe and superior performance for the removal of Xe from nuclear fuel reprocessing plants.

Funder

Welch Foundation

China Academy of Engineering Physics

National Natural Science Foundation of China

Publisher

Royal Society of Chemistry (RSC)

Subject

General Materials Science,Renewable Energy, Sustainability and the Environment,General Chemistry

Reference58 articles.

1. International Energy Outlook 2013 , U.S. Energy Information Administration , Washington, DC , 2013

2. U.S. Department of Energy , Strategy for the Management and Disposal of Used Nuclear Fuel and High-Level Radioactive Waste , U.S. Department of Energy , Washington, DC , 2013

3. Atmospheric xenon radioactive isotope monitoring

4. A comparative histopathological study of argon and krypton laser irradiations of the human retina.

5. Anesthetics as tEratogens: Nitrous Oxide Is Fetotoxic, Xenon Is Not

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