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Volcanic Rock Materials for Defluoridation of Water in Fixed-Bed Column Systems

机译:固定床柱系统中水偏氟的火山岩材料

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摘要

Consumption of drinking water with a high concentration of fluoride (>1.5 mg/L) causes detrimental health problems and is a challenging issue in various regions around the globe. In this study, a continuous fixed-bed column adsorption system was employed for defluoridation of water using volcanic rocks, virgin pumice (VPum) and virgin scoria (VSco), as adsorbents. The XRD, SEM, FTIR, BET, XRF, ICP-OES, and pH Point of Zero Charges (pHPZC) analysis were performed for both adsorbents to elucidate the adsorption mechanisms and the suitability for fluoride removal. The effects of particle size of adsorbents, solution pH, and flow rate on the adsorption performance of the column were assessed at room temperature, constant initial concentration, and bed depth. The maximum removal capacity of 110 mg/kg for VPum and 22 mg/kg for VSco were achieved at particle sizes of 0.075–0.425 mm and <0.075 mm, respectively, at a low solution pH (2.00) and flow rate (1.25 mL/min). The fluoride breakthrough occurred late and the treated water volume was higher at a low pH and flow rate for both adsorbents. The Thomas and Adams–Bohart models were utilized and fitted well with the experimental kinetic data and the entire breakthrough curves for both adsorbents. Overall, the results revealed that the developed column is effective in handling water containing excess fluoride. Additional testing of the adsorbents including regeneration options is, however, required to confirm that the defluoridation of groundwater employing volcanic rocks is a safe and sustainable method.
机译:含有高浓度氟化物(> 1.5mg / L)的饮用水的消耗导致健康问题,并且在全球各种地区是一个具有挑战性的问题。在该研究中,使用连续的固定床柱吸附系统用于使用火山岩,维尔京浮石(VPUM)和原始毒蕈(VSCO)作为吸附剂的水偏氟化。对两种吸附剂进行零充电(PHPZC)分析的XRD,SEM,FTIR,BET,XRF,ICP-OES和pH点,以阐明吸附机构和氟化物去除的适用性。在室温,恒定初始浓度和床深度下评估吸附剂,溶液pH和流速对塔的吸附性能的粒度的影响。在低溶液pH(2.00)和流速(1.25ml / “氟化物突破发生晚期,并且处理过的水体积低,低pH值和两种吸附剂的流速。使用实验动力学数据和两个吸附剂的整个突破性曲线使用并安装了托马斯和Adams-Bohart模型。总体而言,结果表明,发达的柱在处理含有过量氟化物的水中是有效的。然而,需要进行再生选择的吸附剂的额外测试是为了确认采用火山岩的地下水的偏法是一种安全和可持续的方法。

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