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Fluoride ion adsorption onto palm stone: Optimization through response surface methodology isotherm and adsorbent characteristics data

机译:氟离子在棕榈石上的吸附:通过响应面方法等温线和吸附剂特性数据进行优化

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摘要

In some part of the world, groundwater source can become unsafe for drinking due to the high concentration of fluoride ions []. The low cost and facile-produced adsorbent like palm stone could effectively removed fluoride ions through adsorption process. In this dataset, the influence of fluoride ion concentration, solution pH, adsorbent dosage, and contact time on fluoride ion adsorption by palm stones was tested by central composite design (CCD) under response surface methodology (RSM). The data stone carbonized adsorbent was prepared by a simple and facile method at relatively low temperature of 250 °C during 3 h. The adsorbent had the main functional groups of O–H, –OH, Si–H, C=O, N=O, C–C, C–OR, C–H, and C–Br on its surface. At the optimized conditions obtained by RSM, about 84.78% of fluoride ion was removed using the adsorbent. The Langmuir isotherm was suitable for correlation of equilibrium data (maximum adsorption capacity= 3.95 mg/g). Overall, the data offer a facile adsorbent to water and wastewater works which face to high level of fluoride water/ wastewater content.
机译:在世界的某些地方,由于氟离子的浓度很高,地下水源可能变得不安全饮用[]。低成本,易于生产的吸附剂(如棕榈石)可以通过吸附过程有效去除氟离子。在该数据集中,通过中心复合设计(CCD)在响应面方法(RSM)下测试了氟离子浓度,溶液pH值,吸附剂剂量和接触时间对棕榈石吸附氟离子的影响。数据石炭化吸附剂是通过简单易行的方法在3小时内于250°C的相对低温下制备的。吸附剂的表面具有主要官能团O–H,–OH,Si–H,C = O,N = O,CC–C–OR,CH–H和C–Br。在通过RSM获得的最佳条件下,使用吸附剂去除了约84.78%的氟离子。 Langmuir等温线适用于平衡数据的关联(最大吸附容量= 3.95 mg / g)。总体而言,这些数据为水和废水处理提供了一种简便的吸附剂,因为氟化物水/废水的含量很高。

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