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Defluoridation of Groundwater Using Raw Bauxite: Kinetics and Thermodynamics

机译:使用未加工的铝土矿对地下水进行脱氟的动力学和热力学

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High concentration of fluoride in drinking water causes dental and skeletal fluorosis, a slow, progressive and incurable disease. Removal of fluoride from water (defluoridation) offers a viable remedy to high fluoride content in water and fluorosis where other domestic water treatment solutions are not practicable. Conventional defluoridation technologies are either inefficient or require significant financial and technological investment. Therefore studies in developing countries have focused on local defluoridating agents for abating high fluorides and fluorosis. This study therefore investigated the efficiency of using raw bauxite in defluoridating groundwater through batch equilibrium studies. The bauxite exhibited defluoridation efficiency of up to 96.1% for groundwater with a fluoride concentration of 6.17 mg/L at a bauxite dosage of 0.120 kg/L. High fluoride uptake capacity of up to 275 mg/kg was obtained for the raw bauxite. Gibbsite which is the main constituent of the raw bauxite was responsible for the fluoride removal. The intraparticle diffusion model revealed that fluoride sorption by the raw bauxite occurred through both surface complexation and penetrative diffusion. Ion exchange resulting in the precipitation of insoluble AlF3 might add to the fluoride removal. Fluoride sorption was spontaneous and showed first order kinetics. The activation energy and enthalpy of reaction were determined as 19.6 and 126.5 kJ/mol, respectively.
机译:饮用水中高浓度的氟化物会导致牙齿和骨骼氟中毒,这是一种缓慢,进行性和不治之症。从水中去除氟化物(除氟)可为水中和高氟中的高氟化物含量提供可行的补救方法,而其他家用水处理解决方案则不可行。常规的脱氟技术要么效率低下,要么需要大量的资金和技术投资。因此,发展中国家的研究集中于局部除氟剂,以减轻高氟化物和氟中毒。因此,本研究通过批量平衡研究来研究使用粗铝土矿对地下水进行除氟的效率。在铝土矿剂量为0.120 kg / L的情况下,铝土矿对氟化物的除氟效率高达96.1%,氟化物浓度为6.17 efficiencymg / L。粗铝土矿的氟化物吸收量高达275 mg / kg。铝土矿的主要成分是三水铝石,它负责除氟。颗粒内扩散模型表明,铝土矿中氟化物的吸附是通过表面络合和渗透扩散而发生的。导致不溶性AlF3沉淀的离子交换可能会增加除氟效果。氟化物吸附是自发的,并表现出一级动力学。测定的活化能和反应焓分别为19.6和126.5 kJ / mol。

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