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Layered Double Hydroxide and Its Calcined Product for Fluoride Removal from Groundwater of Ethiopian Rift Valley

机译:层状双氢氧化物及其煅烧产物用于去除埃塞俄比亚裂谷的地下水

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In this study, batch experiments have been carried out to investigate the mechanism of fluoride uptake by layered double hydroxide (LDH) and calcined layered double hydroxide (CLDH). Furthermore, practical use of these synthetic minerals was studied in continuous mini-column experiments. In these column studies, groundwater from Ethiopia was tested. LDH and CLDH were synthesized with Mg/Al mole ratio of 2. From batch experimental study, LDH and CLDH have shown maximum removal capacity of 84 and 222 mg F-/g from aqueous solution, respectively. It was observed that fluoride removal was pH dependent with favorable pH range of 5-7 (max. at pH 6). The mechanism of removal is suggested to be ion exchange for LDH and a memory effect followed by surface precipitation reaction for CLDH. The presence of other anions lowered defluoridation capacity of LDH in the order of PO43- > SO42- > NO3- approximate to Cl-. From continuous experiments at 1 mM NaHCO3, LDH showed maximum defluoridation capacity of 1.3 mg/g and CLDH up to 20 mg/g. It was also observed that increase of bicarbonate concentration to 10 mM lowered the fluoride uptake capacity of CLDH to 4 mg/g. The presence of 1 mM H4SiO4 further reduced fluoride uptake capacity to 3 mg/g. CLDH column tested with groundwater from the Rift Valley with 10.5 mg F-/L has shown maximum removal capacity of 2.2 mg F-/g. Regeneration of this column indicated that CLDH has a good potential to be re-used.
机译:在这项研究中,已经进行了批量实验,以研究层状双氢氧化物(LDH)和煅烧层状双氢氧化物(CLDH)吸收氟的机理。此外,在连续的微型柱实验中研究了这些合成矿物的实际使用。在这些专栏研究中,对埃塞俄比亚的地下水进行了测试。合成的LDH和CLDH的Mg / Al摩尔比为2。从批处理实验研究来看,LDH和CLDH的最大去除能力分别为84和222 mg F- / g。观察到氟化物的去除取决于pH,有利的pH范围为5-7(最大pH为6)。建议去除的机制是LDH的离子交换和记忆效应,然后是CLDH的表面沉淀反应。其他阴离子的存在降低了LDH的脱氟能力,其顺序为PO43-> SO42-> NO3-,接近Cl-。通过在1 mM NaHCO3上进行的连续实验,LDH的最大脱氟能力为1.3 mg / g,CLDH最高为20 mg / g。还观察到碳酸氢盐浓度增加至10mM将CLDH的氟化物吸收能力降低至4mg / g。 1 mM H4SiO4的存在进一步将氟化物吸收能力降低至3 mg / g。用来自裂谷的地下水以10.5 mg F- / L进行测试的CLDH色谱柱显示最大去除量为2.2 mg F- / g。该色谱柱的再生表明,CLDH具有很好的重用潜力。

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