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Crop and Substrate Tests with Single Use Rooting "Pillows" for the VEGGIE Plant Growth HardwareVEGGIE is a small plant production chamber built by ORBITEC. This chamber can be collapsed for easy stowage and deployed in orbit. It is designed for gravity independent operation, and provides 0.17 square m of crop growth area with three primary subsystems: an LED light panel, extendable transparent Teflon bellows to enclose the plants, and a wicking reservoir. VEGGIE would provide the capability for astronauts to grow fresh foods for dietary supplementation. Initial planting concepts tested with the VEGGIE included direct seeding or plug placement on the reservoir surface. These options had issues of salt accumulation and eventual toxicity if the reservoir was filled with nutrient solution, and hardware reuse was limited due to sanitation. In response a rooting packet or "pillow" concept was developed: single-use bags of media containing time release fertilizer with a wicking surface contacting the VEGGIE reservoir. Pillows being tested are small electrostatic bags with a Nitex nylon mesh side, each holding 100 mL of dry media. Six pillows fit in one VEGGIE unit; however pillow size could vary depending on crop selected. Seeds can be planted directly in pillows and planted pillows can be hydrated in space as desired. Our goals were to define optimal media and crops for an ISS mission scenario. Plant tests in pillows were performed in a controlled environment chamber set to habitat-relevant conditions, and capillary reservoir analogs were utilized. Media tested within pillows included: a commercial peat-based potting mix, arcillite (calcined clay), perlite: vermiculite, and peat-based: arcillite blends. Testing included 15 types of leafy greens, snow pea, radish, and herbs. Media performance was crop dependent, but generally plants showed the greatest growth in the peat-based: arcillite mixes. Crops with the best performance in pillows were identified, and testing is underway with select leafy greens examining plant and microbial load response to repeated harvest. We plan to use findings from previous flight testing with media to evaluate the effects of capillary flow from the reservoir to pillows in microgravity.
Document ID
20110015824
Acquisition Source
Kennedy Space Center
Document Type
Conference Paper
Authors
Massa, Gioia
(NASA Kennedy Space Center Cocoa Beach, FL, United States)
Newsham, Gerard
(NASA Kennedy Space Center Cocoa Beach, FL, United States)
Caro, Janicce
(NASA Kennedy Space Center Cocoa Beach, FL, United States)
Stutte, Gary
(NASA Kennedy Space Center Cocoa Beach, FL, United States)
Morrow, Robert
(Orbital Technologies Corp. Madison, WI, United States)
Wheeler, Raymond
(NASA Kennedy Space Center Cocoa Beach, FL, United States)
Date Acquired
August 25, 2013
Publication Date
January 1, 2011
Subject Category
Man/System Technology And Life Support
Report/Patent Number
KSC-2011-217
KSC-2011-217R
Meeting Information
Meeting: American Society for Gravitational and Space Biology
Location: San Jose, CA
Country: United States
Start Date: November 3, 2011
End Date: November 6, 2011
Distribution Limits
Public
Copyright
Public Use Permitted.
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