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Synthesis and characterization of Ethiopian kaolin for the removal of basic yellow (BY 28) dye from aqueous solution as a potential adsorbent

机译:埃塞俄比亚高岭土的合成与表征从水溶液中除去碱性黄(28)染料作为潜在吸附剂

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摘要

In the present research, the kaolin adsorbents (beneficiated, raw powder, and calcined) were prepared from Ethiopian natural kaolin through mechanical, wet, and thermal processes. The geochemical and surface properties of kaolin adsorbent were characterized using FTIR, SEM/EDS, XRD, and XRF. In the batch experiment, basic operation parameters (initial dye concentrations, pH, temperature, contact time, and adsorbent dosage) were examined. Percentage removal efficiency basic yellow 28 (BY28) dye were recorded as 94.79%, 92.08%, and 87.08% onto beneficiated, raw, and calcined kaolin absorbents, respectively at an initial dye concentration of 20 mg/L, solution pH of 9, the temperature of 30 °C°C, and contact time of 60 min and adsorbent dosage of 1g/100L. The molar ratio of SiO2/Al2O3 was recorded as 2.911 Percent mass composition of Ethiopian kaolin which is higher than the expected pure kaolinite standard which allows us to classify the kaolin clay as a siliceous one. The calculated values of ΔG0 for beneficiated adsorbent are -1.243, 1.576, and 4.396 kJ/mol at 303.15, 323.15, and 343.15 K, respectively for 20 mg/L of dye concentration and solution pH of 9, suggests that the thermodynamic behavior at lowest temperature is more feasible and spontaneous as compared with the higher temperature one. A similar fashion was calculated for raw and calcined adsorbents. The negative values of ΔHo and ΔS° suggest that the adsorption phenomenon is exothermic and the adsorbate molecules are organized on the solid phase in a more disordered fashion than the liquid phase. The pseudo-first-order and pseudo-second-order models have been used to describe the kinetics in the adsorption processes. The Pseudo-second-order model has been fitted for the BY 28 dye adsorption in the studied concentration range. The adsorption of BY 28 dye for raw and calcined adsorbents follows the Langmuir isotherm and the Freundlich isotherm fitted for the beneficiated adsorbent. The amount of BY28 dye taken up by beneficiated, raw, and calcined kaolin adsorbents was found as 1.896, 1.842, and 1.742 mg/g, respectively at a contact time of 1.0 h, the adsorbent dosage of 1.0 g, initial dye concentration = 20 mg/L and solution pH = 9 at 30 °C. The results found that these raw and prepared local kaolin adsorbents have a capacity as low-cost alternatives for the removal of dyes in industrial wastewater.
机译:在本研究中,通过机械,湿和热过程从埃塞俄比亚天然高岭土制备高岭土吸附剂(有益的,原料粉末和煅烧)。使用FTIR,SEM / EDS,XRD和XRF表征高岭土吸附剂的地球化学和表面性质。在批量实验中,检查基本操作参数(初始染料浓度,pH,温度,接触时间和吸附剂量)。百分比去除效率碱性黄色28(BY28)染料分别以50mg / L的初始染料浓度为94.79%,92.08%和87.08%,分别以20mg / L的初始染料浓度,溶液pH为9,温度为30°C℃,接触时间为60分钟,吸附剂剂量为1g / 100L。 SiO 2 / Al 2 O 3的摩尔比记录为2.911%的埃塞俄比亚高岭土质量组成,高于预期的纯高岭石标准,其允许我们将高岭土粘土分类为硅质。所得有益吸附剂的ΔG0的计算值分别为-1.243,1.576和4.396kJ / mol,分别为20mg / L染料浓度和9的染料pH值,表明热力学行为最低与较高温度相比,温度更加可行和自发。为原料和煅烧的吸附剂计算了类似的方式。 ΔHO和ΔS°的负值表明吸附现象是放热的,并且吸附剂分子以比液相更无序的方式在固相上组织。已使用伪第一顺序和伪二阶模型来描述吸附过程中的动力学。伪二阶模型已在研究浓度范围内拟合28染料吸附。用28染料对原料和煅烧吸附剂的吸附遵循Langmuir等温线,并且适用于受益吸附剂的Freundlich等温线。通过有益,原料和煅烧的高岭土吸附剂的28染料的量分别在1.0小时的接触时间为1.896,1.842和1.742mg / g,吸附剂剂量为1.0g,初始染料浓度= 20 Mg / L和溶液pH = 9,30℃。结果发现,这些原料和制备的当地高岭土吸附剂具有低成本的替代品,用于在工业废水中去除染料。

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