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Possible applications of ferrate(VI) in the treatment of industrial wastewater effluent in the laboratory

机译:高铁酸盐(VI)在实验室处理工业废水中的可能应用

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This paper shows the effects of ferrate(VI) application in the treatment of industrial wastewater effluent in laboratory conditions. Samples used are a mixture of wastewater effluent from various industrial plants whose composition was determined by analyzing samples before the ferrate(VI) treatment. Determining physical-chemical characteristics of the samples showed very high chemical oxygen demand (COD) and the concentrations of individual pollutants are higher than the maximum allowed. In the tested samples, the COD was from 18 (sample 1) to 580 times (sample 2) greater than allowed (allowed 45 - 150 mg/l), while the concentrations of certain metals were several times higher than allowed (Cu allowed 0,1 mg/l, Zn allowed 0,2 mg/l). Also, a high concentration of total phosphorus content (allowed 2 mg/l) and fluoride was found (allowed 20 mg/l), 2-3 times higher than permissible. The applied Na2FeO4 was synthesized by electrochemical method and applied in situ. Physical-chemical testing of samples, after treatment with different amounts (2, 5, 8, and 10 ml) of Na2FeO4, concentration of 8 g/l showed that ferrate(VI) can be used as a multifunctional agent in the purification of industrial wastewater, where in the amount of contaminating matter is reduced below the maximum permitted level. It was demonstrated the high efficiency of ferrate(VI) as a strong oxidant in the removal of total P and suspended materials. Also pointed out was the high sorption power of the generated ferric(III)hydroxide, which with its developed surface absorbs 95,5% of the F- and removes it from the solution in the form of sludge. Showed a high efficiency of ferrate(VI) in the total removal of P (70 to 99,5%), and F- (89 to 95,5%), but depending on the presence of the total COD value or the presence of the total organic substances. At high values of the COD major part of ferrate(VI) is consumed in the oxidation of organic material and the formation of Fe(OH)3, which accelerate the process of decomposition of ferrate(VI), which contributes to lower the efficiency of the removal of P and F-. [Projekat Ministarstva nauke Republike Srbije, br. TR 34025 i br. 31080]
机译:本文展示了高铁酸盐(VI)在实验室条件下处理工业废水的效果。所使用的样品是来自各种工业工厂的废水的混合物,其组成是通过在高铁酸盐(VI)处理之前分析样品来确定的。测定样品的物理化学特性显示出很高的化学需氧量(COD),并且单个污染物的浓度高于允许的最大值。在测试样品中,COD比允许的(允许的45-150 mg / l)高18倍(样品1)到580倍(样品2),而某些金属的浓度比允许的高几倍(Cu允许0 0.1 mg / l,允许的Zn为0.2 mg / l。另外,发现高浓度的总磷含量(允许2 mg / l)和氟化物(允许20 mg / l),比允许的含量高2-3倍。所施加的Na 2 FeO 4通过电化学方法合成并原位施加。样品的物理化学测试,用不同量(2、5、8和10 ml)的Na2FeO4处理后,浓度为8 g / l,表明高铁酸盐(VI)可用作工业净化中的多功能试剂废水,其中污染物的含量减少到最大允许水平以下。事实证明,高铁酸盐(VI)作为强氧化剂可有效去除总磷和悬浮物。还指出的是生成的氢氧化铁(III)的高吸附能力,其表面发达,可吸收95.5%的F-并以污泥的形式将其从溶液中去除。在去除P(70%至99.5%)和F-(89%至95.5%)的过程中显示出高铁酸盐(VI)的高效率,但取决于总COD值的存在或总有机物。在高COD值时,高铁酸盐(VI)的大部分被消耗在有机物质的氧化和Fe(OH)3的形成中,从而加速了高铁酸盐(VI)的分解过程,从而降低了高铁酸盐(VI)的效率。去除P和F-。 [Projekat Ministarstva nauke Republike Srbije,br。 TR 34025 i br。 31080]

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