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Vacuum Regenerable Sorbents For CO2 and Humidity Control within the xEMU

Awardee

XPLOSAFE LLC

712 EASTGATE ST
STILLWATER, OK, 74074-6409
USA

Award Year: 2023

UEI: DDV1PJUEK2X9

HUBZone Owned: Yes

Woman Owned: No

Socially and Economically Disadvantaged: No

Congressional District: 3

Tagged as:

SBIR

Phase II

Seal of the Agency: NASA

Awarding Agency

NASA

Total Award Amount: $879,994

Contract Number: 80NSSC23CA167

Agency Tracking Number: 222376

Solicitation Topic Code: H4

Solicitation Number: SBIR_22_P2

Abstract

In this Phase II SBIR, XploSafe will build on its Phase I work to advance the development and evaluation of sorbents identified during the Phase I. Phase I results demonstrated the feasibility of sorbent candidates as viable replacement for the current carbon dioxide and humidity control solution. The developed materials exhibit significant advantages including higher CO2 capacity and easier regeneration under vacuum. For Phase II, XploSafe will further investigate physical properties as it is related to specific NASA requirements, expand experimental measurements of the capacity and kinetics for the sorption of carbon dioxide and humidity and vacuum regeneration, and develop and verify sorbent performance integration into the xEMU RCA unit. The researchers will focus on developing sorbents with long operational life and reduced or ideally eliminated outgassing of undesired contaminates such as ammonia. A targeted goal will be to use regeneration and potentially a larger CO2 capacity per gram to reduce the required sorbent mass, with respect to SA9T, while also maintaining the CO2 and humidity control under operating conditions. A fully regenerable sorbent with no irreversible binding site and little outgassing, could also reduce both the RCA and TCC total mass by allowing smaller units with less sorbent mass. In Phase II, XploSafe will construct nbsp;several testing apparatuses to simulate conditions that match the requirements of the xEMU in relation to the RCA unit. The testing apparatuses will enable evaluation of the sorbent media prior to being provided to NASA for possible on-site evaluations. Samples of the developed sorbent prototypes will be provided for formal review by NASA starting after month 12 followed by updated sorbent prototypes that will be available for periodic reviews, and the final sorbent material will be delivered at the end of the project.

Award Schedule

  1. 2022
    Solicitation Year

  2. 2023
    Award Year

  3. June 1, 2023
    Award Start Date

  4. May 31, 2025
    Award End Date

Principal Investigator

Name: John Tidwell
Phone: (580) 475-7377
Email: johnt@xplosafe.com

Business Contact

Name: Shoaib Shaikh
Phone: (918) 813-2955
Email: shoaib@xplosafe.com

Research Institution

Name: N/A