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Experiment with Automatic Growing and Harvest Systems

机译:实验自动生长和收获系统

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An autonomous plant growing system will be needed for optimal food production in space.Integrated food production (FP),air revitalization (AR) and water purification (WP) systems will offer major advantages over physical chemical systems for life support functions.Seeds and small plants,however,contribute little to AR and WP,as the amount of photosynthetically active biomass is much smaller than in fully-grown plants.From the time of seed germination,photosynthesis gradually increases and is terminated at harvest time.Under present technology,successive crops are grown to average out the supply and demand of available resources,with the resultant amount of energy expended for lighting and environmental controls remaining constant,regardless of plant size.The Automatic Growing and Harvest System (AGHS) has been developed to overcome these problems.AGHS can maintain the optimal bioregeneration level through perpetual growth (without replanting),which can be translated as an optimal level of FP ,AR,and WP.This method can presently be applied to the production of selected vegetables; achieving tremendous increases in efficiency while drastically reducing labor requirements,energy consumption,weight,and mass.If an indeterminant growth ( vining) characteristic can be added to other crops by hybridization or DNA transfer,the selection of vegetables that can be produced in this system can be broadened.Furthermore,this method offers a biological control of gas exchange and decreases physical chemical system requirements.
机译:将需要一个自治植物生长系统在space.Integrated粮食生产的最佳食品生产(FP),空气再生(AR)和净水(WP)系统将提供超过生命保障functions.Seeds和小的物理化学体系的主要优势植物,然而,很少有助于AR和WP,如光合活性的生物质的量小于在完全生长plants.From种子萌发的时间要小得多,光合作用逐渐增加,并且终止在收获time.Under本技术中,连续作物生长至平均出供应和可用资源的需求,以消耗用于照明和保持不变的环境控制能量的产生量,无论植物size.The自动生长及收获系统(AGHS)已经发展到解决这些问题.AGHS可以保持通过永久生长(无再种植),其可以翻译为一个最佳电平的最佳电平生物再生FP,AR,和WP.This的方法目前可以​​应用于生产选择的蔬菜;在效率实现了巨大的增加,而大幅度减少劳动力的需求,能耗,重量,和一个mass.If生长静不定(蔓生)特性可以通过杂交或DNA转移,可在该系统中产生的蔬菜选择加入到其它作物可以broadened.Furthermore,这种方法提供了气体交换的生物控制和减少物理化学体系的要求。

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