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首页> 外文期刊>Life Sciences in Space Research >Incorporation of mineralized human waste and fish waste as a source of higher plant mineral nutrition in the BTLSS mass exchange
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Incorporation of mineralized human waste and fish waste as a source of higher plant mineral nutrition in the BTLSS mass exchange

机译:在BTLSS大规模交易中将矿化的人类废物和鱼类废物纳入为高等植物矿物质营养的来源

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摘要

The present study deals with the development of the principles and conditions of fish waste mineralization using the method of wet combustion with hydrogen peroxide in alternating electromagnetic field and describes testing mineralized human waste and fish waste as sources of nutrients for plants in the biotechnical human life support system (BTLSS). The study shows that mineralization of fish waste in the wet combustion reactor should be performed in the presence of readily oxidized organic matter, represented by human waste, as an activator of oxidation. Re-mineralization of the sediment in the mixture of hydrogen peroxide and nitric acid in the wet combustion reactor converts mineral elements bound in the sediment into the form available to plants. Using mineralized fish waste as an additional source of mineral elements in the nutrient solutions for growing plants based on mineralized human waste is a way to reduce the amounts of mineral elements added to the solution to replenish it, enabling fuller closure of material loops in the BTLSS.
机译:本研究涉及使用交流电中的过氧化氢湿燃烧方法在交替电磁场中鱼粪矿化的原理和条件的发展,并描述了在人类生物技术生命支持中测试矿化的人类粪便和鱼粪作为植物营养的来源系统(BTLSS)。研究表明,湿式燃烧反应器中鱼粪的矿化应在存在以人体废物为代表的易氧化有机物作为氧化活化剂的情况下进行。在湿式燃烧反应器中过氧化氢和硝酸混合物中的沉淀物再矿化,将结合在沉淀物中的矿物质转化为植物可用的形式。在矿化人类废物的基础上,使用矿化的鱼粪废物作为生长植物营养液中矿物质元素的附加来源,是减少添加到溶液中以补充矿物质的矿物质元素的方法,从而能够完全封闭BTLSS中的物质循环。

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