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Ion-Specific Nutrient Management in Closed Systems: The Necessity for Ion-Selective Sensors in Terrestrial and Space-Based Agriculture and Water Management Systems

机译:封闭系统中特定于离子的养分管理:地面和空基农业和水管理系统中离子选择传感器的必要性

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摘要

The ability to monitor and control plant nutrient ions in fertigation solutions, on an ion-specific basis, is critical to the future of controlled environment agriculture crop production, be it in traditional terrestrial settings (e.g., greenhouse crop production) or as a component of bioregenerative life support systems for long duration space exploration. Several technologies are currently available that can provide the required measurement of ion-specific activities in solution. The greenhouse sector has invested in research examining the potential of a number of these technologies to meet the industry's demanding requirements, and although no ideal solution yet exists for on-line measurement, growers do utilize technologies such as high-performance liquid chromatography to provide off-line measurements. An analogous situation exists on the International Space Station where, technological solutions are sought, but currently on-orbit water quality monitoring is considerably restricted. This paper examines the specific advantages that on-line ion-selective sensors could provide to plant production systems both terrestrially and when utilized in space-based biological life support systems and how similar technologies could be applied to nominal on-orbit water quality monitoring. A historical development and technical review of the various ion-selective monitoring technologies is provided.
机译:在特定离子的基础上,监​​视和控制施肥溶液中植物营养离子的能力对于受控环境农业作物生产的未来至关重要,无论是在传统陆地环境(例如温室作物生产)中还是作为作物的一部分用于长期太空探索的生物再生生命支持系统。当前有几种技术可以提供溶液中特定离子活度的所需测量。温室部门已投入研究,研究了其中许多技术的潜力,以满足行业的苛刻要求,尽管目前尚不存在用于在线测量的理想解决方案,但种植者仍在利用高效液相色谱等技术来提供在线测量。在国际空间站上存在类似的情况,在这里寻求技术解决方案,但是目前在轨水质监测受到很大限制。本文研究了在线离子选择传感器可以为地面生产设备以及在天基生物生命支持系统中使用时提供给植物生产系统的特殊优势,以及如何将类似技术应用于名义上的在途水质监测。提供了各种离子选择性监测技术的历史发展和技术回顾。

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