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Material Circulation Design Based on Organic Matter Analysis of Edible and Inedible Parts of Plants for CEEf

机译:基于有机物分析的中小型企业植物可食用和不可食用部分的物料流通设计

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In order to verify the material circulation design for a Closed Ecology Experiment Facilities, CEEF, the organic element analysis of edible and inedible parts of the major candidate plants (rice, soybean, sesame and komatsuna (Brassica campestris)) has been carried out experimentally and by using food analysis data. In the experiment, rice, soybean and sesame were cultivated by hydroponics and soil culture for this purpose. The organic element analysis data from the food analysis data were made using empirical chemical equations formulated as to major nutriments by Volk and Rummel. The experimental results showed good agreement with those obtained from the food analysis data. Komatsuna has high nitrogen content. Inedible parts of rice, soybean and sesame have almost the same constituent ratio. The edible part of soybean contains five times as much nitrogen as its inedible part. Rice shows no significant difference between the edible and inedible parts. The edible part of soybean was a higher carbon content and lower oxygen content than the inedible part. The ash content in plants depends on the cultivation method. It was found that the deviation of organic element quantities between the experimental analysis and the design is within the design margin of 20%, which was set in determiningthe specification for the material circulation for CEEF.
机译:为了验证封闭生态实验设施CEEF的物料循环设计,已经对主要候选植物(大米,大豆,芝麻和小松(芸苔))的可食用部分和不可食用部分进行了有机元素分析,并进行了分析。通过使用食物分析数据。在该实验中,为此目的通过水培法和土壤培养法来种植水稻,大豆和芝麻。食品分析数据中的有机元素分析数据是使用由Volk和Rummel制定的主要营养成分的经验化学方程式得出的。实验结果与从食品分析数据获得的结果吻合良好。 Komatsuna的氮含量很高。大米,大豆和芝麻的不可食部分具有几乎相同的组成比。大豆的可食部分含氮量是其不可食部分的五倍。大米在可食部分和不可食部分之间没有显着差异。大豆的可食部分比不可食的部分具有更高的碳含量和更低的氧含量。植物中的灰分含量取决于栽培方法。发现在实验分析和设计之间有机元素数量的偏差在20%的设计裕度之内,这是在确定CEEF的物料循环规范时设置的。

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