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Development of Mg–Al–La tri-metal mixed oxide entrapped in alginate for removal of fluoride from wastewater

机译:藻酸盐中夹带的Mg-Al-La三金属混合氧化物的开发,用于去除废水中的氟化物

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摘要

New biopolymer beads, composed of a Mg–Al–La tri-metal oxide (MAL) and alginate (SA), were synthesized, characterized and tested for their fluoride removal efficiency from wastewater. The morphology and properties of the beads were characterized by Fourier transform infrared spectroscopy (FTIR), X-ray photoelectron spectroscopy (XPS) and scanning electron microscopy (SEM). Batch sorption studies were carried out to investigate the adsorption capacity of fluoride on SA-CMAL. The equilibrium sorption data were analyzed using the adsorption isotherm models of Langmuir and Freundlich. To explore the adsorption mechanism, thermodynamic parameters including ΔH0, ΔS0 and ΔG0 were calculated from the results of adsorption thermodynamics. The maximum adsorption capacity of fluoride adsorption on SA-CMAL was 30.96 mg g?1 at 303 K. Compared with the Langmuir model, the Freundlich isotherm model better fitted the equilibrium data. In addition, the adsorption process was best fitted with pseudo-second-order kinetics. The value of the thermodynamic parameter ΔH0 indicated an exothermic adsorption process. A negative value of ΔG0 shows the feasibility and spontaneity of material–anion interaction. The detrimental effect of co-existing anions increased in the order SO42? < NO3? < CO32? < PO42?.
机译:合成了由Mg-Al-La三金属氧化物(MAL)和藻酸盐(SA)组成的新型生物聚合物珠粒,对其特性进行了表征并测试了它们从废水中的除氟效率。通过傅里叶变换红外光谱(FTIR),X射线光电子能谱(XPS)和扫描电子显微镜(SEM)对微珠的形貌和性能进行了表征。进行了批量吸附研究,以研究氟化物在SA-CMAL上的吸附能力。使用Langmuir和Freundlich的吸附等温线模型分析平衡吸附数据。为了探索吸附机理,热力学参数包括Δ H 0 ,Δ S 0根据吸附热力学结果计算出 和Δ G 0 。 303 K下,SA-CMAL吸附氟的最大吸附容量为30.96 mg g ?1 。与Langmuir模型相比,Freundlich等温模型更好地拟合了平衡数据。此外,吸附过程最适合拟二阶动力学。热力学参数Δ H 0 的值表明存在放热吸附过程。负值Δ G 0 表明材料与阴离子相互作用的可行性和自发性。共存阴离子的有害作用按SO 4 2? < sub> 3 3 2 ? 4 2?

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