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Biosorption of nickel(II) and copper(II) ions from synthetic and real effluents by alginate-based biosorbent produced from seaweed Sargassum sp.

机译:通过藻酸盐的生物吸收性从Seaweed Sargassum Sp产生的基于藻酸盐的生物吸附剂的镍(II)和铜(II)离子的生物吸附。

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In this study, the alginate-based biosorbent produced from seaweed Sargassum sp. was used in biosorption of Ni2+ and Cu2+ ions from synthetic solutions and real electroplating effluents. Biosorption kinetics, isotherms, pH effect, thermodynamic parameters, and sorption/desorption cycles were also evaluated. Kinetic studies show the sorption equilibrium can be obtained within 180 min for Ni2+ ions and 360 min for Cu2+ ions, and the adsorption kinetics data are well described by the pseudo-second order and diffusion in spherical adsorbents. Langmuir model can be well used to describe the biosorption isotherm data. The maximum sorption capacity (q(max)) and Langmuir constant (b) were up to 1.147 mmol g(-1) and 1.139 L mmol(-1) for Ni2+ ions and 1.640 mmol g(-1) and 4.645 L mmol(-1) for Cu2+ ions. The calculated thermodynamic parameters (Delta G degrees, Delta H degrees, and Delta S degrees) showed that the biosorption of Ni2+ and Cu2+ ions are predominantly a chemical phenomenon of endothermic nature, favorable, and spontaneous at the temperature ranges of 293-313 K. Partial desorption of the Ni2+ and Cu2+ ions on the biosorbent was achieved using acidic and saline eluents, allowing the biosorbent to be used in new sorption/desorption cycles. EDX analysis suggests an ion exchange mechanism between calcium ions on the biosorbent and target metals. Biosorption of Ni2+ and Cu2+ from real electroplating effluents with high concentrations of light metals becomes highly competitive, decreasing the amount of Ni2+ and Cu2+ ions biosorbed due to the ionic strength effect.
机译:在这项研究中,藻酸盐的生物吸附剂由海藻纱苏SP产生。用于从合成溶液和实际电镀液体的Ni2 +和Cu2 +离子的生物吸附中。还评估了生物吸附动力学,等温,pH效应,热力学参数和吸附/解吸循环。动力学研究表明,用于Ni2 +离子的180分钟内和Cu 2 +离子的360分钟可以在180分钟内获得吸附平衡,并且通过伪二次阶和球形吸附剂中的扩散描述了吸附动力学数据。 Langmuir模型可以很好地用于描述生物吸附等温线数据。最大吸附能力(Q(最大))和朗米尔常数(B)高达1.147mmol G(-1)和1.139 L mmol(-1),用于1.640mmol g(-1)和4.645升麦醇( -1)对于Cu2 +离子。计算出的热力学参数(Delta G度,ΔH度和δ)表明,Ni2 +和Cu2 +离子的生物吸收主要是在293-313k的温度范围内的吸热性质,有利和自发的化学现象。使用酸性和盐水洗脱液实现了生物吸附剂上Ni2 +和Cu 2 +离子的部分解吸,从而使生物吸附剂用于新的吸附/解吸循环。 EDX分析表明生物吸附剂上钙离子与靶标金属之间的离子交换机制。 Ni2 +和Cu2 +的生物吸附来自具有高浓度的光金属的实际电镀污水变得高度竞争,降低了由于离子强度效应而生物吸收的Ni2 +和Cu2 +离子的量。

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