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Arsenate removal from water using sand-red mud columns

机译:使用砂红色泥浆柱从水中去除砷

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This study describes experiments in which sorption filters, filled with chemically modified red mud (Bauxsol) or activated Bauxsol (AB) coated sand, are used to remove As(Ⅴ) (arsenate) from water. Bauxsol-coated sand (BCS) and AB-coated sand (ABCS) are prepared by mixing Bauxsol or AB with wet sand and drying. Samples of the BCS and ABCS are also used in batch experiments to obtain isotherm data. The observed adsorption data fit the Langmuir model well, with adsorption maxima of 3.32 and 1.64mg g~(-1) at pH values of 4.5 and 7.1, respectively for BCS; and of 2.14mg g~(-1) for ABCS at a pH of 7.1. Test results show that higher arsenate adsorption capacities can be achieved for both BCS and ABCS when using the columns compared to results for batch experiments; the difference is greater for BCS. Additional batch tests, carried out for 21 days using BCS to explain the observed discrepancy, show that the equilibrium time previously used in batch experiments was too short because adsorption continued for at least 21 days and reached 87% after 21 days compared to only 35% obtained after 4 h. Fixed bed column tests, used to investigate the effects of flow rate and initial arsenate concentration indicate that the process is sensitive to both parameters, with lower flow rates (longer effective residence times in the columns) and initial arsenate concentrations providing better column performance. An examination of the combined effect of potential competing anions (i.e. silicate, phosphate, sulphate and bicarbonate) on the column performance showed that the presence of these anions in tap water slightly decreases arsenate removal. Each breakthrough curve is compared to the Thomas model, and it is found that the model may be applied to estimate the arsenate sorption capacity in columns filled with BCS and ABCS. The data obtained from both batch and column studies indicate that BCS and ABCS filtration could be effectively used to remove arsenate from water, with the latter being more efficient.
机译:这项研究描述了使用吸附过滤器填充化学改性赤泥(Bauxsol)或活化Bauxsol(AB)涂层砂的实验,以从水中去除As(Ⅴ)(砷酸盐)。通过将Bauxsol或AB与湿砂混合并干燥来制备Bauxsol涂层砂(BCS)和AB涂层砂(ABCS)。 BCS和ABCS的样品也用于批量实验中,以获取等温线数据。观察到的吸附数据很好地拟合了Langmuir模型,在BCS的pH值为4.5和7.1时,吸附最大值分别为3.32和1.64mg g〜(-1)。 pH 7.1时ABCS为2.14mg g〜(-1)。测试结果表明,与分批实验结果相比,使用该色谱柱时,BCS和ABCS均可实现更高的砷酸盐吸附能力;对于BCS,差异更大。使用BCS进行了21天的额外分批测试以解释观察到的差异,表明先前在分批实验中使用的平衡时间太短,因为吸附持续了至少21天,并在21天后达到了87%,而之前只有35% 4小时后获得。用于研究流速和初始砷酸盐浓度的固定床色谱柱测试表明,该过程对两个参数均敏感,流速较低(较长的有效色谱柱停留时间),且初始砷酸盐浓度可提供更好的色谱柱性能。对潜在竞争性阴离子(即硅酸盐,磷酸盐,硫酸盐和碳酸氢盐)对色谱柱性能的综合影响的研究表明,自来水中这些阴离子的存在会稍微降低砷的去除。将每条穿透曲线与托马斯模型进行比较,发现该模型可用于估计填充有BCS和ABCS的色谱柱中的砷吸附容量。从批次研究和柱研究中获得的数据表明,BCS和ABCS过滤可有效地从水中去除砷酸盐,后者效率更高。

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