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Influence on removal iron and manganese from groundwater with micro pollutants

机译:用微污染物从地下水中去除铁和锰的影响

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Groundwater in the runoff process dissolved iron and manganese from strata. The groundwater, polluted slightly by surface contaminants through strata penetration, is multi-polluted groundwater. All these impurities in the water are reductive condition, thus causes oxidation competition and steady-state complexation among them. And effect of the water treatment is reduced. The groundwater was treated with the process as aeration and contact oxidation filtration for pollutants to influence removal iron and manganese from groundwater. The test was done with three different water samples respectively in the meantime. The first water sample contains iron and manganese; the second iron, manganese and ammonium; and the third iron, manganese, ammonium and organics. The third sample is as the multi-polluted groundwater. The test results indicated that coexisting with iron and manganese in water, organic material and ammonia nitrogen impeded greatly oxidation of iron and manganese because removal rate of iron and manganese from the multi-polluted sample was lower greatly than from the samples containing only iron and manganese. And that the removal rate of organic material and ammonia nitrogen from water polluted was low. Coexisting with iron and manganese in water, ammonia nitrogen affected lightly to removal iron, but removal manganese greatly. In conclusion multi-polluted groundwater is difficult to be treated for drinking.
机译:径流过程中的地下水溶解铁和锰。地下水通过地层渗透率逐渐污染,是地层渗透性的,是多污染的地下水。水中的所有这些杂质都是还原条件,从而导致它们之间的氧化竞争和稳态综合。水处理的效果降低。地下水用该过程处理,作为通气和接触氧化过滤,用于污染物,以影响来自地下水的去除铁和锰。该试验分别与三种不同的水样。第一水样含有铁和锰;第二根铁,锰和铵;和第三根铁,锰,铵和有机物。第三个样品作为多污染地下水。测试结果表明,在水中的熨斗和锰和氨氮共存,耐磨性地氧化铁和锰,因为来自多污染样品的铁和锰的去除率大于含有铁和锰的样品。并且,有机材料的去除率和来自水污染的氨氮的去除率低。与钢铁和锰在水中共存,氨氮影响轻微去除铁,但大大去除锰。总之,难以治疗多污染的地下水供饮用。

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