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Adsorption study of heavy metals in aqueous solutions aiming at the treatment of contaminated groundwater

机译:旨在治疗污染地下水的水溶液中重金属的吸附研究

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This study evaluates the application of the vegetal activated carbon (AC), vegetable AC impregnated with Ag and Cu (0.08% m/m) and cationic Supergel(TM) SGC650H resin for adsorption of Fe3+ and Pb2+ ions in closed and batch system. The best adsorption capacities were obtained by using the cationic resin SGC650H, pH 3, temperature of 30 degrees C and stirring speed of 100 rpm. Thus, the kinetic and equilibrium experiments, in mono- and bicomponent, were performed using SGC650H resin, wherein the kinetic models of pseudo-first and pseudo-second order presented a good fit to the kinetic data, for mono- and bicomponent, respectively. The Langmuir isotherm adequately represented the monocomponent equilibrium data, showing maximum adsorption capacities values of 7.18 and 4.00 meq g(-1) for Fe3+ and Pb2+, respectively. An inhibitory effect between the metal species was verified by fitting the modified extended Langmuir isotherm model to the binary equilibrium data, which allowed to predict changes in the surface affinity to the adsorbent by the metal ions. Based on the observed results, the use of SGC650H resin presents great potential for water treatment systems contaminated with heavy metals.
机译:该研究评估了植物活性炭(AC),浸渍有Ag和Cu(0.08%M / M)和阳离子叠加(TM)SGC650H树脂的植物Ac的应用,以吸附闭合和批量系中的Fe3 +和PB2 +离子。通过使用阳离子树脂SGC650H,pH 3,30℃的温度和100rpm的搅拌速度获得最佳吸附能力。因此,使用SGC650H树脂进行单声组分和双组分的动力学和平衡实验,其中伪第一和伪二次阶的动力学模型分别呈现出良好的拟合动力学数据,用于单型和双组分。 Langmuir等温机构充分代表单一组分平衡数据,分别显示Fe3 +和Pb2 +的最大吸附容量值7.18和4.00meq g(-1)。通过将修饰的扩展朗米尔等温模型拟合到二元平衡数据,验证了金属物种之间的抑制作用,这使得可以通过金属离子预测对吸附剂的表面亲和力的变化。基于所观察结果,使用SGC650H树脂的使用呈现出用重金属污染的水处理系统的巨大潜力。

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