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Adsorption Study on Moringa Oleifera Seeds and Musa Cavendish as Natural Water Purification Agents for Removal of Lead, Nickel and Cadmium from Drinking Water

机译:辣木果酱和Musa试剂的吸附研究作为饮用水中铅,镍和镉的天然水净化剂

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The effectiveness of plant based materials Moringa oleifera (Moringa) seeds and Musa cavendish (banana peel) for removing heavy metals namely lead (Pb), nickel (Ni) and cadmium (Cd) from contaminated groundwater was studied. Tests were carried out with individual and combined biomass at neutral pH condition on synthetic groundwater samples. The optimum biomass doses were determined as 200 mg/L for single biomass and 400 mg/L (in the ratio of 200 mg/L: 200 mg/L) for combined biomasses and used for adsorption isotherm studies with contact time of 30 minutes. Results showed that combined biomasses was able to met the Pb, Ni and Cd WHO standards from higher Pb, Ni and Cd initial concentrations which were up to 40 |ig/L, 50 ug/L 9 p.g/L, respectively compared to individual biomass of Moringa seed and banana peel. Moringa seeds exhibited the highest removal of Pb (81%) while the combined biomasses was most effective in removing Ni (74%) and Cd (97%) over wider their initial concentration ranges. The experimental data were linearized with Langmuir and Freundlich adsorption isotherm models. Freundlich model described the Pb adsorption better than the Langmuir model for all the tested biomasses. However, the Langmuir model fit better with the experimental data of Ni adsorption by Moringa seeds. Both models showed negligible differences in the coefficient of determination (R2) when applied for Ni and Cd adsorption on banana peel and combined biomasses, suggesting that there were multiple layers on the biomass interacting with the metals. Chemisorption is suggested to be involved in Pb adsorption for all tested biomasses as the value of nF calculated was lower than one. This type of adsorption could explain the phenomenon of different behavior of Pb removal and the higher Pb adsorption capacity (represented by KF values) compared to Ni and Cd. The study demonstrates that Moringa seeds, banana peel and their combination have the potential to be used as a natural alternative to the otfier water treatment agents for removing the Pb, Ni and Cd from drinking water.
机译:研究了植物基础材料Moringa Oleifera(Moringa)种子和Musa caventish(香蕉皮)用于除去重金属的铅(Pb),镍(Ni)和镉(Cd),来自受污染地下水的铅(Pb)。用个体和组合生物质对合成地下水样品的中性pH条件进行试验。最佳生物质剂量为组合生物量的单个生物质和400mg / L(以200mg / L:200mg / L)的400mg / L(比例为200mg / L:200mg / L),并用于吸附等温线,接触时间为30分钟。结果表明,与单独的生物质相比,合并的生物量能够达到高达40 | Ig / L,50ug / L 9 pg / L的较高Pb,Ni和Cd初始浓度的Pb,Ni和Cd。 Moringa种子和香蕉皮。 Moringa种子表现出最高的Pb(81%),而组合的生物量最有效地除去Ni(74%)和Cd(97%),在其初始浓度范围内更宽。实验数据用Langmuir和Freundlich吸附等温线模型线性化。 Freundlich模型描述了PB吸附比所有测试生物质的Langmuir模型更好。然而,Langmuir模型与Moringa种子的Ni吸附的实验数据更好。当施用于香蕉果皮和组合生物质上施用Ni和Cd吸附时,两种模型均显示出局部测定系数(R2)的差异,表明生物质上有多个层与金属相互作用。建议将化学吸附参与所有测试生物质的PB吸附,因为计算的NF值低于1。与Ni和Cd相比,这种类型的吸附可以解释Pb去除的不同行为和较高的Pb吸附能力(由KF值表示)的现象。该研究表明,Moringa种子,香蕉果皮及其组合具有用作从饮用水中除去Pb,Ni和Cd的OTFier水处理剂的自然替代品。

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