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3D-Printed Zeolite Monoliths for CO2 Removal from Enclosed Environments
Harshul Thakkar1, Stephen Eastman1, Amit Hajari1
1Department of Chemical & Biochemical Engineering, Missouri University of Science and Technology , Rolla, Missouri 65409-1230, United States.
ACS Applied Materials & Interfaces
|September 24, 2016
Summary
Three-dimensional (3D) printing enables the creation of novel zeolite monoliths for efficient carbon dioxide (CO2) capture. These structured adsorbents demonstrate comparable performance to traditional powders, offering a scalable solution for CO2 removal.
Area of Science:
- Materials Science
- Chemical Engineering
- Environmental Science
Background:
- Structured adsorbents, particularly monolithic contactors, are crucial for scalable carbon dioxide (CO2) capture technologies.
- Zeolite-based materials are effective sorbents for CO2 removal from gas streams.
Purpose of the Study:
- To fabricate and evaluate 3D-printed 13X and 5A zeolite monoliths for CO2 capture from air.
- To compare the properties and performance of these novel monoliths with their powder counterparts.
Main Methods:
- Fabrication of 3D-printed zeolite monoliths using 13X and 5A zeolites.
- Characterization of physical and structural properties of the monoliths.
- Evaluation of CO2 adsorption uptake and breakthrough dynamics using gas chromatography.
Main Results:
- 3D-printed zeolite monoliths with up to 90 wt% zeolite loading showed CO2 adsorption capacities comparable to powder sorbents.
- Adsorption capacities for 5A and 13X monoliths were 1.59 and 1.60 mmol/g, respectively, at 5000 ppm CO2.
- Monolithic structures exhibited fast CO2/N2 breakthrough dynamics and good mechanical stability, reducing attrition and dusting.
Conclusions:
- 3D printing provides a cost-effective and facile method for producing structured zeolite adsorbents with tunable properties.
- The developed zeolite monoliths are promising for practical and scalable CO2 capture applications.
- This approach offers an alternative to traditional packing systems for gas separation processes.
Keywords:
3D-printed monolithCO2 removal from airadsorptionenclosed environmentszeolite 13Xzeolite 5A
