An Experimentally Verified Physical Properties Database For Sorbent Selection

Dissemination of verified adsorption data for software vendors and RAPID partners. Data reporting verified adsorption data, summarized from previous experimental and molecular simulation runs, will be tabulated and made available to RAPID partners. Consultation with other RAPID teams engaged in design for adsorption processes and RAPID members who are software vendors will inform the format and structure of this data.

Link to Project: https://rapid.aiche.org/projects/experimentally-verified-physical-properties-database-sorbent-selection-and-simulation

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Physical Properties Database For Sorbent Selection

About

The study used systematic literature meta-analysis to examine the adsorption equilibrium of alcohols in porous materials using a collection of more than 500 alcohol isotherm measurements. The results of systematic literature meta-analysis that produced a data set of more than 900 gas mixture adsorption experiments have been reported. A hierarchical framework of chemical mixtures has been provided with examples to develop well-defined exemplar mixtures to bridge the gap between fundamental studies and practical applications.

 

RAPID Content File Info

The systematic literature meta-analysis has been used to examine the adsorption equilibrium of alcohols in porous materials using a collection of more than 500 alcohol isotherm measurements.

https://doi.org/10.1021/acs.jced.0c00598

The results of systematic literature meta-analysis that produced a data set of more than 900 gas mixture adsorption experiments have been reported.

https://doi.org/10.1021/acs.iecr.0c05398

A hierarchical framework of chemical mixtures has been provided with examples to develop well-defined exemplar mixtures to bridge the gap between fundamental studies and practical applications.

https://doi.org/10.1021/jacsau.1c00490

Related Links: https://adsorption.nist.gov/index.php#home

Licensing Info

All materials are subject to licensing terms agreed by the developers in accordance to the RAPID Members Agreement. The referenced published material is subject to the appropriate copyright and publisher restrictions.

Acknowledgment for Software

This material is based upon work supported by the Department of Energy’s Office of Energy Efficient and Renewable Energy’ Advanced Manufacturing Office under Award Number DE-EE0007888.

Corresponding Author(s)

David S. Sholl, Georgia Institute of Technology, david.sholl@chbe.gatech.edu

Licensing

All materials are subject to licensing terms agreed by the developers in accordance to the RAPID Members Agreement. The referenced published material is subject to the appropriate copyright and publisher restrictions.

Acknowledgment

This material is based upon work supported by the Department of Energy’s Office of Energy Efficient and Renewable Energy’ Advanced Manufacturing Office under Award Number DE-EE0007888.