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Evaluating the performance of iron nanoparticle resin in removing arsenate from water

机译:评估铁纳米颗粒树脂从水中去除砷酸盐的性能

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This research was undertaken to evaluate the effectiveness of a hybrid sorbent resin (Lewatit FO36) with goethite structure for removing arsenate from water. Column experiments (with constant flow rate of 8 mL/min, corresponding to 2 min empty bed contact time (EBCT)) were conducted to evaluate the adsorption capacity of resin before and after regeneration and effects of chloride, sulfate, bicarbonate and combined competing ions for arsenate removal from water. The adsorption capacity was approximately 3.229 mg/g that was reduced to 2.826 mg/g after regeneration with 12.48% decrease, which indicates to a successful regeneration procedure. Chloride and sulfate ions had no significant effects on arsenate removal but arsenic removal decreased in the presence of bicarbonate and combined ions. This reduction may be due to the ability of bicarbonate ions in extracting and mobilizing the arsenate ions from iron oxyhydroxides. Results of this study showed that Lewatit FO36 could be developed as a suitable sorbent for arsenate removal.
机译:进行这项研究以评估具有针铁矿结构的杂化吸附剂树脂(Lewatit FO36)从水中去除砷酸盐的有效性。进行了柱实验(恒定流速为8 mL / min,对应于2分钟的空床接触时间(EBCT)),以评估树脂在再生前后的吸附能力以及氯离子,硫酸根,碳酸氢根和组合竞争离子的影响用于从水中去除砷。吸附容量约为3.229 mg / g,在再生后降低到2.826 mg / g,降低了12.48%,这表明再生程序成功。氯离子和硫酸根离子对砷的去除没有显着影响,但是在碳酸氢根和混合离子存在下,砷的去除降低。这种减少可能是由于碳酸氢根离子从羟基氧化铁中提取和迁移砷酸根离子的能力所致。这项研究的结果表明,Lewatit FO36可以开发成一种适合去除砷酸盐的吸附剂。

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