Johnson C F, Dreschel T W, Brown C S, Wheeler R M
Dynamac Corporation, Kennedy Space Center, FL 32899, USA.
Adv Space Res. 1996;18(4-5):239-42. doi: 10.1016/0273-1177(95)00883-g.
The Porous Tube Plant Nutrient Delivery System (PTPNDS), a hydrophilic, microporous ceramic tube hydroponic system designed for microgravity, will be tested in a middeck locker of the Space Shuttle. The flight experiment will focus on hardware operation and assess its ability to support seed germination and early seedling growth in microgravity. The water controlling system of the PTPNDS hardware has been successfully tested during the parabolic flight of the KC-135. One challenge to the development of the space flight experiment was to devise a method of holding seeds to the cylindrical porous tube. The seed-holder must provide water and air to the seed, absorb water from the porous tube, withstand sterilization, provide a clear path for shoots and roots to emerge, and be composed of flight qualified materials. In preparation for the flight experiment, a wheat seed-holder has been designed that utilizes a cellulose acetate plug to facilitate imbibition and to hold the wheat seeds in contact with the porous tube in the correct orientation during the vibration of launch and the microgravity environment of orbit. Germination and growth studies with wheat at a range of temperatures showed that optimal moisture was 78% (by weight) in the cellulose acetate seed holders. These and other design considerations are discussed.
多孔管植物营养输送系统(PTPNDS)是一种为微重力环境设计的亲水性微孔陶瓷管水培系统,将在航天飞机的中层储物箱中进行测试。该飞行实验将聚焦于硬件操作,并评估其在微重力环境下支持种子发芽和幼苗早期生长的能力。PTPNDS硬件的水控制系统已在KC - 135的抛物线飞行中成功测试。太空飞行实验开发过程中的一个挑战是设计一种将种子固定在圆柱形多孔管上的方法。种子固定器必须为种子提供水和空气,从多孔管吸收水分,耐受灭菌处理,为芽和根的长出提供清晰通道,并且由符合飞行要求的材料制成。为飞行实验做准备,已设计出一种小麦种子固定器,它利用醋酸纤维素塞来促进吸水,并在发射振动和轨道微重力环境期间使小麦种子以正确方向与多孔管接触。在一系列温度下对小麦进行的发芽和生长研究表明,醋酸纤维素种子固定器中的最佳湿度为78%(重量)。本文讨论了这些以及其他设计考量因素。