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On the Research of Environmental Mineral Material Preparation and Application

机译:论环境矿物材料制备及应用研究

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In the part of the paper, use bentonite as a basic material synthesis with phenolic aldehyde foam plastic. The experiment mainly researched into the capacity of the synthesis to purify and store rain water. The results show that, water absorption polymer-phenolic aldehyde foam's addition to environmental mineral material can promote the capacity of purifying rain water greatly, with 10 percent of bentonite, the removal of BOD5 in the rain water can be promoted to 90 percent, COD's to 80 percent, during which the removal turbidity can be 83 percent. While use bentonite only, the removal rate of BOD5 can only be 62 percent, the removal rate of COD can be 20 percent, and the removal rate of turbidity can be 68 percent. So it depends on the local's pollution conditions to choose environment mineral material to purify the rain water effectively. When choosing bentonite as basic material to synthesis with phenolic aldehyde foam plastic, the polymer's water absorption rate and rate of water loss to rain water change with different proportion of bentonite. Through the purify rain water test with plants cultivated in environmental mineral material, purify layer and storage layer can meet all the requirements including the function of purifying and storing rain water, exhibit benefit of the synthesis polymer.
机译:在本文的部分中,使用膨润土作为酚醛醛泡沫塑料的基本材料合成。该实验主要研究了合成的能力净化和储存雨水。结果表明,对环境矿物材料的吸水性聚合物 - 酚醛醛泡沫的产能可以促进净水的能力大大,10%的膨润土,雨水中的BOD5的去除可以促进90%,COD 80%,在此期间去除浊度可以为83%。仅使用膨润土时,BOD5的去除率只能为62%,鳕鱼的去除率可以是20%,浊度的去除率可以为68%。因此,这取决于当地的污染条件,选择环境矿物材料,有效地净化雨水。选择膨润土作为酚醛醛泡沫塑料合成的基础材料时,聚合物的吸水率和雨水损失率与膨润土的不同比例。通过净化雨水试验与环境矿物质栽培的植物,净化层和储存层可以满足所有要求,包括净化和储存雨水的功能,表现出合成聚合物的益处。

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