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Hydrothermal synthesis of LaFeO 3 nanoparticles adsorbent: Characterization and application of error functions for adsorption of fluoride

机译:Lafeo的水热合成 3 纳米粒子吸附剂:氟化物吸附误差功能的表征及应用

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摘要

The adsorption of fluoride from aqueous solution by lanthanum ferrite nanoparticles (LaFeO3NPs) synthesized by the hydrothermal method has been investigated. This experimental study was conducted on a laboratory scale. The effects of various operating parameters such as pH (3–11), LaFeO3NPs dosage (0.1–1.0 g/L), contact time (15–120 min), temperature (303–318 K), and initial concentration of fluoride (15–40 mg/L) on fluoride adsorption were studied. The results showed that under optimal conditions of fluoride concentration of 20 mg/L, pH of 5, LaFeO3NPs dosage of 0.9 g/L, temperature of 308 K, and contact time of 60 min, maximum percentage removal of 94.75 % was obtained. The process of fluoride adsorption on LaFeO3NPs was found to depend on the Freundlich adsorption and Koble–Corrigan isotherm models. The monolayer adsorption capacity of LaFeO3NPs was 2.575 mg/g. The kinetic data fitted best into the pseudo-second-order model considering the values of the regression coefficients (r2) and error functions used. The thermodynamics study indicated that the adsorption process was exothermic (ΔH°< 0) and spontaneous (ΔG°< 0) in nature. It could be concluded that the synthesized LaFeO3NPs can be used as an effective adsorbent for fluoride ions removal from aqueous solutions.
机译:研究了通过水热法合成的镧铁氧体纳米粒子(Lafeo3NP)从水溶液中吸附氟化物的吸附。该实验研究是在实验室规模进行的。各种操作参数的影响,如pH(3-11),LafeO3NPS剂量(0.1-1.0g / L),接触时间(15-120分钟),温度(303-318 k)和氟化物的初始浓度(15研究了氟化物吸附的40mg / L.结果表明,在氟化物浓度为20mg / L的最佳条件下,pH为5,Lafeo3nps剂量为0.9g / l,温度为308k,接触时间为60分钟,得到94.75%的最大百分比。发现氟化物吸附在LaFeO3NP上的过程取决于Freundlich吸附和Koble-Colrigan等温模型。 Lafeo3nps的单层吸附能力为2.575 mg / g。考虑到使用回归系数(R2)的值和使用的误差函数,最佳进入伪二阶模型的动力学数据。热力学研究表明,吸附过程是放热(ΔH°<0)和自然的自发(ΔG°<0)。可以得出结论,合成的LafeO3NP可以用作氟离子从水溶液中除去的有效吸附剂。

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