<?xml version="1.0" encoding="UTF-8"?><item href="/issues/2020-summer/new-frontier-spaceships.html" dsn="news"><item_date>06/26/2020 12:00:00 AM</item_date><category_header/><title>New Frontier for Spaceships</title><subheader/><description>Engineering student, professor find better way to revitalize air aboard spaceships.</description><author/><photographer> </photographer><image><img src="" width="900" height="676" alt="" title="space exploration graphic"/></image><taxonomy-story-type>Campus News</taxonomy-story-type><taxonomy-cultural-story-category/><taxonomy-news-sections/><taxonomy-college-department>College of Engineering</taxonomy-college-department><taxonomy-tags>Science/Research</taxonomy-tags><type>story</type><categories/><relationships/><main-content>
    
    
  
    
      
      
        Alyssa Sarvadi ('20) and her mentor Huseyin Bostanci received a NASA Space Technology Graduate Research Opportunities grant that will provide up to $160,000 over two years for their research into the design and development of a "microgravity vortex phase separator for liquid amine CO2 removal system."      
    
    Alyssa Sarvadi ('20) and her mentor Huseyin Bostanci, an associate professor in the College of Engineering, believe they have found a better way to revitalize the air aboard spaceships. And NASA agrees.

The two received a NASA Space Technology Graduate Research Opportunities grant that will provide up to $160,000 over two years for their research into the design and development of a "microgravity vortex phase separator for liquid amine CO2 removal system." Sarvadi -- who will begin graduate studies at UNT in the fall and will work at NASA during the next two summers as part of the grant -- and Bostanci propose to design and build a system using a microgravity vortex phase separator that could potentially offer a reliable, high-throughput flow and energy-efficient CO2 removal technology for future crewed space exploration missions.
  

    
  </main-content></item>