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首页> 外文期刊>Journal of Hazardous Materials >Treatment of arsenic contaminated water in a laboratory scale up-flow bio-column reactor
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Treatment of arsenic contaminated water in a laboratory scale up-flow bio-column reactor

机译:在实验室规模上流生物柱反应器中处理砷污染的水

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The present paper describes the observations on the treatment or arsenic contaminated synthetic industrial effluent in a bio-column reactor. Ralstonia eutropha MTCC 2487 has been immobilized on the granular activated carbon (GAC) bed in the column reactor. The synthetic water sample containing As(T) (As(III):As(V) = 1:1), Fe, Mn, Cu and Zn at the initial concentrations of 25, 10, 2, 5, 10 ppm, respectively, was used. Concentrations of all the elements have been found to be reduced below their permissible limits in the treated water. The significant effect of empty bed contact time (EBCT) and bed height on the arsenic removal was observed in the initial stage. However, after some time of operation (approximately 3-4 days) no such effect was observed. Removal of As(III) and As(V) was almost similar after ~2 days of operation. However, at the initial stage As(V) removal was slightly more than that of As(III). In absence of washing, after ~4-5 days of operation, the bio-column reactor was observed to act as a GAC column reactor based on physico-chemical adsorption. Like arsenic, the percent removals of Fe, Mn, Cu and Zn also attained minimum after ~1 day and increased significantly to the optimum value within 3-4 days of operation. Dissolved oxygen (DO) has been found to decrease along with the increasing bed height from the bottom. The pH of the solution in the reactor has increased slightly and oxidation-reduction potential (ORP) has decreased with the time of operation.
机译:本文描述了在生物塔反应器中处理或被砷污染的合成工业废水的观察结果。 Ralstonia eutropha MTCC 2487已固定在柱反应器中的颗粒活性炭(GAC)床上。包含初始浓度分别为25、10、2、5、10 ppm的As(T)(As(III):As(V)= 1:1),Fe,Mn,Cu和Zn的合成水样品被使用了。发现所有元素的浓度都降低到处理后的水中低于其允许极限的水平。在初始阶段观察到空床接触时间(EBCT)和床高度对除砷的显着影响。但是,经过一段时间的操作(大约3-4天),没有观察到这种效果。手术约2天后,As(III)和As(V)的去除几乎相似。但是,在初始阶段,As(V)的去除量略高于As(III)。在没有洗涤的情况下,运行约4-5天后,观察到生物柱反应器充当基于物理化学吸附的GAC柱反应器。像砷一样,Fe,Mn,Cu和Zn的去除百分率在约1天后也达到最小值,并在3-4天之内显着增加至最佳值。已发现,随着床底高度的增加,溶解氧(DO)会降低。随着操作时间的增加,反应器中溶液的pH值略有增加,氧化还原电位(ORP)降低了。

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