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高级生命支持中钠的再循环:基于作物生产系统的策略。

Recycling of Na in advanced life support: strategies based on crop production systems.

作者信息

Guntur S V, Mackowiak C, Wheeler R M

机构信息

US National Research Council, Kennedy Space Center, FL 32899, USA. subbagv%

出版信息

Life Support Biosph Sci. 1999;6(2):153-60.

Abstract

Sodium is an essential dietary requirement in human nutrition, but seldom holds much importance as a nutritional element for crop plants. In Advanced Life Support (ALS) systems, recycling of gases, nutrients, and water loops is required to improve system closure. If plants are to play a significant role in recycling of human wastes, Na will need to accumulate in edible tissues for return to the crew diet. If crops fail to accumulate the incoming Na into edible tissues, Na could become a threat to the hydroponic food production system by increasing the nutrient solution salinity. Vegetable crops of Chenopodiaceae such as spinach, table beet, and chard may have a high potential to supply Na to the human diet, as Na can substitute for K to a large extent in metabolic processes of these crops. Various strategies are outlined that include both genetic and environmental management aspects to optimize the Na recovery from waste streams and their resupply through the human diet in ALS.

摘要

钠是人类营养中必需的膳食成分,但作为作物的营养元素,其重要性却很少被提及。在高级生命支持(ALS)系统中,需要对气体、养分和水循环进行循环利用,以提高系统的封闭性。如果植物要在人类废物的循环利用中发挥重要作用,那么钠就需要在可食用组织中积累,以便回归宇航员的饮食。如果作物不能将摄入的钠积累到可食用组织中,那么钠可能会因增加营养液盐度而对水培食品生产系统构成威胁。藜科蔬菜作物,如菠菜、食用甜菜和叶用甜菜,可能具有向人类饮食供应钠的巨大潜力,因为在这些作物的代谢过程中,钠在很大程度上可以替代钾。文中概述了各种策略,包括遗传和环境管理方面,以优化从废物流中回收钠,并通过ALS中的人类饮食重新供应钠。

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