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Fluoride Uptake Characteristics of Activated Carbon From Agricultural-waste

机译:农业废料中活性炭的氟吸收特性

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Removal of excess fluoride from ground water to within the permissible limits of 1.0-1.5 mg/L is the only way to control fluorosis. Batch and column type experiments were carried out for the adsorption of fluoride using activated carbon prepared from palm seed coat (PSCC) by dolomite process. In the batch study, influence of pH, adsorbent dose, contac and initial fluoride concentration was investigated. Adsorption of fluoride was pH dependent and higher removal efficieneies were observed in the pH range of 4-8. Fluoride removal increased with dosage of carbon. A low concentration aluminium sulphate solution (2 per cent) effectively regenerated the exhausted carbon bed. The adsorption process obeyed Freundlich adsorption isotherm. The kinetic studies revealed that the forward rate constant was comparatively much higher than the backward rate constant. Continuous flow experiments in fixed bed columns were carried out with ground water in order to assess the feasibility of this carbon for field application. The performance of the carbon in fluoride removal was studied as a function of flow rale, initial fluoride level and particle size of the adsorbent. Fluoride removal increased with decreasing particle size of the carbon. The interesting feature of the study was that the defluoridation capacity increased with incre the initial fluoride ion concentration. The pH, total alkalinity, total hardness, total dissolved solids of the treated wal< not change appreciably indicating success of this technique for field application.
机译:控制地下水中氟的唯一方法是将地下水中过量的氟化物去除到允许的1.0-1.5 mg / L范围内。进行了分批和柱型实验,以通过白云石工艺由棕榈种皮(PSCC)制备的活性炭吸附氟。在分批研究中,研究了pH,吸附剂剂量,contac和初始氟化物浓度的影响。氟化物的吸附取决于pH值,在4-8的pH范围内观察到较高的去除效率。氟化物的去除随着碳剂量的增加而增加。低浓度的硫酸铝溶液(2%)有效地再生了耗尽的碳床。吸附过程遵循Freundlich吸附等温线。动力学研究表明,前向速率常数相对高于后向速率常数。为了评估这种碳在现场应用中的可行性,在地下水的固定床塔中进行了连续流动实验。研究了碳在除氟中的性能与流动规则,初始氟化物含量和吸附剂粒径的关系。氟化物的去除随着碳颗粒尺寸的减小而增加。该研究的有趣特征是,脱氟能力随初始氟离子浓度的增加而增加。处理过的沃尔玛的pH值,总碱度,总硬度,总溶解固体含量没有明显变化,表明该技术在现场应用中是成功的。

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