火星上的太空农业和地球上的可持续文明

K. Tomita-Yokotani, S. Anilir, N. Katayama, H. Hashimoto, M. Yamashita
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引用次数: 7

摘要

太空农业从代谢废物中再生食物、氧气和水。由于物质循环是由地外天体上有限的可用资源驱动的,因此它可能是面临人口增长极限的陆地农业的极端模式。选择满足空间农业营养要求的食品材料和可接受的食品文化是其设计的基础。从亚洲人的背景,我们选择了大米,大豆,红薯和黄绿色蔬菜。为了补充脂肪酸和某些维生素,饮食中需要动物源性食物。在许多可供繁殖的候选动物中,昆虫引起了极大的兴趣,因为它们比哺乳动物有许多优势。我们提出了几种昆虫物种,如家蚕(Bombyx mori),药店甲虫(Stegobium paniceum)和白蚁(Macrotermes subhyalinus)。这些昆虫不与作物生产竞争,但将不可食用的生物质或废物转化为可食用的形式。水稻、水蕨(Azolla)和泥鳅(Misgurnus anguillicaudatus)在稻田中三合一养殖是太空和地球上可持续农业的另一项建议。此外,我们讨论了共生和生物相互作用,化感作用。
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Space agriculture for habitation on mars and sustainable civilization on earth
Space agriculture regenerates food, oxygen and water from metabolic waste. Since materials recycle is driven by limited resources available on extraterrestrial bodies, it can be an extreme model of terrestrial agriculture facing the growth limit at yet increasing population. Choice of food materials to meet nutritional requirements and foods cultural acceptability for space agriculture is the basis of its design. From Asian background, we selected rice, soybean, sweet potato, and green-yellow vegetables. In order to supplement fatty acids and certain vitamins, animal origin foods are required in diet. Among many candidate animals to breed, insects are of great interest since they have a number of advantages over mammals. We propose several insect species, such as the silkworm (Bombyx mori), the drugstore beetle (Stegobium paniceum), and the termite, (Macrotermes subhyalinus). These insects do not compete with crop production, but convert inedible biomass or waste into an edible form. Tri-culture of rice, water fern (Azolla), and loach fish (Misgurnus anguillicaudatus) in rice paddies is another proposal for space, and sustainable agriculture on Earth. In addition, we discuss symbiosis and biological interaction, allelopathy.
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