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Valorization of Adenanthera pavonina seeds as a potential biosorbent for lead and cadmium removal from single and binary contaminated system

机译:将Adenanthera pavonina种子作为一种潜在的生物吸附剂从单一和二元污染系统中去除铅和镉的潜在价值

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This study investigated the biosorption of Pb?(II) and Cd (II) on powdered seeds of Adenanthera pavonina from single and binary heavy metal solutions. The adsorption capacity of the metal ions was studied as a function of pH, adsorbent dose, initial metal ion concentration, and contact time. In the single heavy metal system, maximum removal of Pb?(II) and Cd (II) were achieved at pH 4 and 6, respectively, while the equilibrium was attained at a contact duration of 35?min at a constant dose of 5?g?L~(?1) was maintained for both Pb?(II) and Cd (II). Further, the kinetic study revealed that the biosorption process was best described by the second-order kinetic model. In the competitive biosorption of binary mixtures of Pb?(II) and Cd (II) were studied in terms of percentage removal of metal ions, adsorption capacity and equilibrium sorption isotherm. The percentage removal of metal ions in binary solutions was suppressed in presence of the other competitive metal ion. Field emission scanning electron microscopy integrated with energy dispersive X-ray spectroscopy of the biomass before (control) and after (metal loaded biomass) the biosoption process, confirmed the presence of respective heavy metal on to the biomass. Fourier transmission infrared spectroscopy spectra supported the activity of hydroxyl, amines, amides, and carboxyl groups in uptake of both heavy metal ions.
机译:这项研究研究了从单重金属溶液和二元重金属溶液中,Adenanthera pavonina的粉状种子对Pb?(II)和Cd(II)的生物吸附。研究了金属离子的吸附容量与pH,吸附剂剂量,初始金属离子浓度和接触时间的关系。在单一的重金属体系中,分别在pH 4和6时最大程度地去除了Pb 2(II)和Cd(II),而在恒定剂量5 6的条件下,接触时间为35分钟时达到了平衡。铅(Ⅱ)和镉(Ⅱ)均保持g·L〜(〜1)。此外,动力学研究表明,生物吸附过程最好用二阶动力学模型来描述。在竞争性生物吸附中,从金属离子的去除百分比,吸附容量和平衡吸附等温线方面研究了Pb?(II)和Cd(II)的二元混合物。在存在其他竞争性金属离子的情况下,二元溶液中金属离子的去除百分比受到抑制。现场发射扫描电子显微镜与生物选择过程之前(对照)和之后(加载金属的生物质)生物质的能量色散X射线光谱相结合,证实了生物质上存在相应的重金属。傅立叶透射红外光谱光谱支持两种重金属离子吸收中的羟基,胺,酰胺和羧基的活性。

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