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The carbon cycle in a bioregenerative life support system with a soil-like substrate

机译:具有土壤样基质的生物再生生命支持系统中的碳循环

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摘要

A mass-flow model of carbon cycle in a bioregenerative life support system (BLSS) including Resource, Plant Growth, Food Processing, Human, Waste Processing, and Waste Storage Modules was developed. A human received food from Plant Growth and Resource Modules. Plants were assumed to be growing on the soil-like substrate (SLS). Another function of SLS was balancing the carbon cycle. The input of BLSS was set to 81 g of carbon per day along with food from the Resource Module. To balance the carbon cycle an equal amount of carbon was removed from BLSS along with urine, feces, plant wastes, and SLS. A mass flow of carbon cycle was used to simulate the effect of light intensity on the basic parameters of the Plant Growth Module. It was calculated that the stationary dry mass of SLS increases from 10 to 35 kg m~(-2) with increase canopy-level daily photosynthetic photon flux (PPF) from 34 to 178 mol m~(-2) d~(-1). On the contrary dry mass of SLS needed to provide one person with plant food is not dependent on light intensity.
机译:建立了包括资源,植物生长,食品加工,人类,废物加工和废物存储模块在内的生物再生生命支持系统(BLSS)中碳循环的质量流模型。一个人从植物生长和资源模块获得食物。假定植物在类土壤基质(SLS)上生长。 SLS的另一个功能是平衡碳循环。 BLSS的输入与资源模块中的食物一起设置为每天81克碳。为了平衡碳循环,从BLSS中除去了相等量的碳以及尿液,粪便,植物废料和SLS。碳循环的质量流量用于模拟光强度对植物生长模块基本参数的影响。计算表明,随着冠层水平的日光合光子通量(PPF)从34 mol m〜(-2)d〜(-1)增加,SLS的静止干质量从10 kg增加到35 kg m〜(-2)。 )。相反,向一个人提供植物性食物所需的SLS干重并不取决于光照强度。

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