Performance and Properties of a Solid Amine Sorbent for Carbon Dioxide Removal in Space Life Support Applications

Рабочие характеристики и свойства твердого аминного сорбента для удаления диоксида углерода в системах жизнеобеспечения космических аппаратов
Sunita Satyapal, Tom Filburn, John Trela, Jeremy Strange
2001-02-20

carbon dioxide removalisothermal flow calorimetrysolid amine sorbentspace life supportthermal gravimetric analysis
NASA is currently using a solid amine sorbent known as HSC + for regeneratively removing CO 2 in space shuttle applications. This sorbent may also be of value for CO 2 removal in various industrial processes such as greenhouse gas control, industrial syntheses, and natural gas purification. To design novel sorbents and to design a CO 2 scrubber based on HSC +, physical and thermochemical property data are required. In this paper, we present a detailed experimental investigation of property data and long-term performance results using HSC + as a CO 2 sorbent. Differential scanning calorimetry was used to determine the heat capacity of the material. Cyclic and equilibrium capacities of the material for CO 2 pickup were determined and long-term test data show excellent performance. In addition, we have determined the heat of adsorption associated with CO 2 pickup by HSC + and the effect of moisture, using isothermal flow calorimetry. We have also performed thermal gravimetric analyses on the materials to gain insight into the stability of the material and determine the temperatures at which CO 2 and constituents of HSC + leave the surface of the material.
1
HSC+ is experimentally characterized as a regenerable solid amine sorbent for CO₂ removal in space life-support applications.
2
Isothermal flow calorimetry quantifies the heat of CO₂ adsorption and evaluates how moisture influences sorbent behavior.
3
Long-term testing demonstrates excellent CO₂-removal performance by HSC+ under repeated operation.
4
The study measures HSC+ heat capacity, cyclic and equilibrium CO₂ capacities, adsorption heat, moisture effects, and thermal stability.
5
Thermogravimetric analyses identify temperatures associated with CO₂ release and loss of HSC+ constituents, informing regeneration and stability assessment.

HSC+ solid amine sorbent for CO2 removal in space life-support applications

Its physical and thermochemical properties, CO2 adsorption capacity and heat of adsorption, moisture effects, long-term cyclic performance, and thermal stability

Publication Details
Publication Date
2001-02-20
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Sunita Satyapal
Tom Filburn
John Trela
Jeremy Strange
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%