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Defluoridation of groundwater using diatomaceous earth: optimization of adsorption conditions, kinetics and leached metals risk assessment

机译:使用硅藻土对地下水进行脱氟:优化吸附条件,动力学和浸出金属的风险评估

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In Sub-Saharan Africa, many rural communities depend on boreholes as the most appropriate source of water supply. Sadly, water from some of the boreholes contains fluoride above the WHO guideline of 1.5 mg/L. Hence, defluoridation is necessary. The aim of this study is to investigate the fluoride uptake capacity of diatomaceous earth (DE), a natural resource at optimized conditions by batch method. X-ray fluorescence analysis showed that the major component is silica (83.1%), while Al2O3 is the main minor component. XRD shows it is an amorphous material. For 8 mg/L fluoride spiked water, the highest per cent fluoride removal at optimum adsorption conditions (contact time: 30 min, adsorbent dosage: 8 g/L, pH 2, temperature: 298 K and shaking speed: 200 rpm) was between 23.4 and 25.6%. PO43- in tested field water was observed to reduce the fluoride uptake capacity of fluoride. The sorption data fitted better into Freundlich isotherm than Langmuir isotherm. Fluoride sorption process was found to be a second-order kinetic. Inductively coupled plasma-mass spectrometer analysis of treated water revealed that metal and non-metal species were released at trace levels. Modification of DE would be necessary to enhance the fluoride adsorption capacity of DE.
机译:在撒哈拉以南非洲,许多农村社区依赖钻孔作为最合适的水源。令人遗憾的是,某些井孔中的水中氟化物含量超过了WHO规定的1.5 mg / L。因此,脱氟是必要的。这项研究的目的是通过分批方法研究在最佳条件下的天然资源硅藻土(DE)的氟吸收能力。 X射线荧光分析表明主要成分是二氧化硅(83.1%),而Al2O3是主要次要成分。 XRD显示其为非晶态材料。对于8 mg / L的加氟水,在最佳吸附条件(接触时间:30分钟,吸附剂量:8 g / L,pH 2,温度:298 K,振摇速度:200 rpm)下,除氟率最高。 23.4和25.6%。在测试的野外水中观察到PO43-降低了氟化物对氟化物的吸收能力。吸附数据比Langmuir等温线更适合Freundlich等温线。发现氟化物吸附过程是二级动力学。处理水的电感耦合等离子体质谱仪分析表明,金属和非金属物质以痕量水平释放。 DE的改性对于增强DE的氟吸附能力将是必要的。

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