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Estimating CO_2 gas exchange in mixed age vegetable plant communities grown on soil-like substrates for life support systems

机译:估算生活在土壤样基质上的混合年龄蔬菜植物群落中的CO_2气体交换

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If soil-like substrate (SLS) is to be used in human life support systems with a high degree of mass closure, the rate of its gas exchange as a compartment for mineralization of plant biomass should be understood. The purpose of this study was to compare variations in CO2gas exchange of vegetable plant communities grown on the soil-like substrate using a number of plant age groups, which determined the so-called conveyor interval. Two experimental plant communities were grown as plant conveyors with different conveyor intervals. The first plant community consisted of conveyors with intervals of 7 days for carrot and beet and 14 days for chufa sedge. The conveyor intervals in the second plant community were 14 days for carrot and beet and 28 days for chufa sedge. This study showed that increasing the number of age groups in the conveyor and, thus, increasing the frequency of adding plant waste to the SLS, decreased the range of variations in CO2concentration in the “plant–soil-like substrate” system. However, the resultant CO2gas exchange was shifted towards CO2release to the atmosphere of the plant community with short conveyor intervals. The duration of the conveyor interval did not significantly affect productivity and mineral composition of plants grown on the SLS.
机译:如果将土壤样基质(SLS)用于具有高度质量封闭性的人类生命支持系统,则应了解其气体交换作为植物生物质矿化隔室的速率。这项研究的目的是比较使用多个植物年龄组在土壤样基质上生长的蔬菜植物群落的CO2气体交换变化,这些变化决定了所谓的输送机间隔。两个实验性植物群落生长为具有不同传送带间隔的植物传送带。第一个植物群落由传送带组成,其中胡萝卜和甜菜的间隔为7天,chufa莎草的间隔为14天。在第二个植物群落中,胡萝卜和甜菜的输送间隔为14天,chufa莎草的输送间隔为28天。这项研究表明,增加传送带中年龄组的数量,从而增加向SLS添加植物废物的频率,减少了“植物-土壤样基质”系统中CO2浓度变化的范围。但是,由此产生的CO2气体交换朝着CO2释放转移到植物群落的大气中,且传送带间隔很短。输送机间隔的持续时间并未显着影响SLS上生长的植物的生产力和矿物质组成。

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