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Removal of Arsenic and Iron from Acidic Water Using Zeolite and Limestone: Batch and Column Studies

机译:使用沸石和石灰石去除酸性水中的砷和铁:批处理和色谱柱研究

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摘要

Zeolite and limestone were tested for their capability of removing As and Fe from acidic water in batch and column experiments. Synthetic acidic water with 3 mg/L As and 50 or 100 mg/L Fe at pH = 2 was used in the column experiments. In the batch experiments, the As concentration, the mass of media, and the contact time were varied between 0.2 and 5 mg As/L, 0.5 and 50 g, and 0.25 and 42 h, respectively. Maximum As sorption capacity as indicated by the Langmuir model was 0.17 mg/g for zeolite and 1.3 mg/g for limestone, at 18-h contact time and 6.3 g/L medium concentration. Energy dispersive X-ray spectroscopy and X-ray photoelectron spectroscopy analyses revealed that As and Fe were retained in zeolite at the end of the batch experiments. The main factors affecting As and Fe removal efficiency and pH raising capacity were the contact time and the media concentration. This was confirmed in the column experiments, since zeolite and limestone columns presented 99% As removal, under a hydraulic loading rate of 21.8 mm/day. However, limestone columns presented a higher Fe removal: 99 versus 73% for zeolite. The results indicate that limestone could be more appropriate than zeolite when As and Fe are present under acidic conditions, given its higher capacity to remove both As and Fe and to raise pH.
机译:在分批和柱实验中,测试了沸石和石灰石从酸性水中去除As和Fe的能力。在柱实验中使用了具有3 mg / L As和50或100 mg / L Fe的合成酸性水,pH = 2。在分批实验中,砷浓度,介质质量和接触时间分别在0.2和5 mg As / L,0.5和50 g,0.25和42 h之间变化。如Langmuir模型所示,在18小时的接触时间和6.3 g / L的介质浓度下,沸石的最大As吸附容量为0.17 mg / g沸石和1.3 mg / g石灰石。能量色散X射线能谱和X射线光电子能谱分析表明,在分批实验结束时,As和Fe被保留在沸石中。影响As和Fe去除效率和pH升高能力的主要因素是接触时间和介质浓度。这在柱实验中得到了证实,因为在21.8 mm /天的水力加载速率下,沸石和石灰石柱显示出99%的As去除。但是,石灰石柱的除铁效率更高:99%,而沸石为73%。结果表明,在酸性条件下存在As和Fe时,石灰石比沸石更合适,因为石灰石具有更高的去除As和Fe的能力以及提高pH的能力。

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