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Methylene Blue Dye Adsorption onto Polyoxometalate Ionic Liquid Supported on Bentonite: Kinetic, Equilibrium and Thermodynamic Studies

机译:苄基蓝染料吸附在膨润土上负载的多氧乙酸盐离子液体上:动力学,平衡和热力学研究

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The potential of polyoxometalate ionic liquid POM-IL supported on low-cost and available eco-friendly Saudi raw bentonite in the adsorption of MB cationic dye was investigated. For this purpose, TOAx[α-XW style="font-family:Verdana;">11 style="font-family:Verdana;">O style="font-family:Verdana;">39 style="font-family:Verdana;">]@Bentonite (X style="font-family:""> style="font-family:Verdana;">= Si, P;TOA = TetraOctylAmmonium), namely SWB and PWB were prepared and characterized by IR, XRD, style="font-family:""> style="font-family:Verdana;">XRF, SEM, TEM and BET. Batch adsorption experiments showed that SWB and PWB have higher adsorption capacity than the raw bentonite with an enhancement of about 37% for SWB. The adsorption capacities of both SWB and PWB improved with increasing contact time and temperature and decreased with higher salt concentration in solution. The pH is shown to have insignificant effect on the adsorption of MB onto SWB and PWB style="font-family:Verdana;">. style="font-family:Verdana;"> This result is quite meaningful in the adsorption process application since it makes pH complicated adjustment of the discharged contaminated water before treatment unnecessary. The Kinetic study expressed that the pseudo-second-order model described the adsorption process better than the pseudo first order. The experimental isotherm data were found to fit the Langmuir model compared to the Freundlich model with a maximum adsorption capacity 277.78 mg/g and 113.6 for PWB and SWB respectively. The thermodynamic parameters illustrated that the adsorption process was favorable, spontaneous and endothermic.
机译:研究了在低成本和可用的Eco友好的沙特原料膨润土上支持的多氧乙酸酯离子液体POM-IL的潜力进行了研究在吸附MB阳离子染料中。为此目的,Toax [α-XW 11 Style =“font-family:verdana;”> O <子> <跨度样式=“font-family:verdana;”> 39 style =“font-family:verdana;”>] @ bentonite(x style =“font-family:”“> style =”font-family:verdana;“> = si,p; toa = tetroctylammonium),制备SWb和Pwb并通过IR表征并表征, XRD, 样式=“font-family:”“”> style =“font-family:verdana;”> xrf,sem,tem和bet。分批吸附实验表明,SWB和PWB具有比原料膨润土更高的吸附能力,增强SWB的增强约37%。 SWB和PWB的吸附容量随着接触时间和温度的增加而改善,并在溶液中含有较高的盐浓度降低。 pH值显示对SWB和PWB de =“font-family:verdana; “>这种结果在吸附过程应用中非常有意义,因为它在治疗不需要之前使排放的受污染水的pH复杂调节。动力学研究表明,伪二阶模型比伪第一顺序更好地描述了吸附过程。发现实验等温物数据分别将Langmuir模型与PWB和SWB的最大吸附容量277.78mg / g和113.6相比适合Langmuir模型。热力学参数说明吸附过程有利,自发性和吸热。

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