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Ecological system model for a self-sustaining and resilient human habitation on the Moon and Mars and for food security and climate change mitigation anywhere on Earth

机译:生态系统模型,可在月球和火星上实现人类自我维持和复原力,并在地球上任何地方缓解粮食安全和气候变化

摘要

An ecological system model for a self-sustaining and resilient human habitation on the Moon and Mars and for food security and climate change mitigation anywhere on Earth. It takes into account the ecological and biological theories and principles by which Earth ecosystems function and applies this knowledge to the establishment of a closed ecological system that mimics the self-sustaining and resilient capacity of Earth. Three zones are used for human habitation, agriculture, and ecological buffer. Expedited primary succession is used to initially establish the agricultural zone and ecological buffer zone with fully functioning biogeochemical cycles and ecological services. Competitive redundancy ensures the security of the food crops while maintaining the biodiversity of plant species. Ecological service reservoirs provide the additional buffering capacity that would normally be supplies by surrounding ecosystems on Earth.
机译:一个生态系统模型,可以在月球和火星上实现自我维持和有弹性的人类居住,并可以减轻地球上任何地方的粮食安全和缓解气候变化。它考虑到了地球生态系统所起作用的生态和生物理论和原理,并将这些知识应用于建立封闭的生态系统,以模仿地球的自我维持和弹性。三个区域用于人类居住,农业和生态缓冲区。最初的快速演替被用来初步建立具有完整的生物地球化学循环和生态服务功能的农业区和生态缓冲区。竞争性冗余确保了粮食作物的安全,同时又保持了植物物种的生物多样性。生态服务水库提供了额外的缓冲能力,通常由地球上周围的生态系统提供。

著录项

  • 公开/公告号US2018016804A1

    专利类型

  • 公开/公告日2018-01-18

    原文格式PDF

  • 申请/专利权人 MORGAN A. IRONS;

    申请/专利号US201715646094

  • 发明设计人 MORGAN A. IRONS;

    申请日2017-07-11

  • 分类号E04H1;E04B1/32;C05B17;A01G9/24;A01G9/18;E04H5/08;A01G9/14;

  • 国家 US

  • 入库时间 2022-08-21 13:03:18

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