OrbHab Paper

 

Plant Atrium System for Food Production in NASA’s Deep Space Habitat Tests (2013)
ID: 293 Flag Paper
Title: Plant Atrium System for Food Production in NASA’s Deep Space Habitat Tests
Authors: G. Massa, M. Simpson, G. Newsham, G. Stutte
Journal Name: 43rd International Conference on Environmental Systems
Year of Publication: 2013
Page Number:
Category: biosphere
Availability: abs
Detail Page: /papers/293
Web Link: https://www.researchgate.net/publication/269046319_Plant_Atrium_System_for_Food_Production_in_NASA%27s_Deep_Space_Habitat_Tests
BoK Link: [[paper:293]]
Abstract
In preparation for future human exploration missions to space, NASA evaluates habitat concepts to assess integration issues, power requirements, crew operations, technology, and system performance. The concept of a Food Production System utilizes fresh foods, such as vegetables and small fruits, harvested on a continuous basis, to improve the crew's diet and quality of life. The system would need to fit conveniently into the habitat and not interfere with other components or operations. To test this concept, a plant growing "atrium" was designed to surround the lift between the lower and upper modules of the Deep Space Habitat and deployed at NASA Desert Research and Technology Studies (DRATS) test site in 2011 and at NASA Johnson Space Center in 2012. With this approach, un-utilized volume provided an area for vegetable growth. For the 2011 test, mizuna, lettuce, basil, radish and sweetpotato plants were grown in trays using commercially available red / blue LED light fixtures. Seedlings were transplanted into the atrium and cared for by the crew. Plants were then harvested two weeks later following completion of the test. In 2012, mizuna, lettuce, and radish plants were grown similarly but under flat panel banks of white LEDs. In 2012, the crew went through plant harvesting, including sanitizing the leafy greens and radishes, which were then consumed. Each test demonstrated successful production of vegetables within a functional hab module. The round red / blue LEDs for the 2011 test lighting cast a purple light in the hab, and were less uniformly distributed over the plant trays. The white LED panels provided broad spectrum light with more uniform distribution. Post-test questionnaires showed that the crew enjoyed tending and consuming the plants and that the white LED light in 2012 provided welcome extra light for the main hab area.