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Sustainable removal of anodized aluminum dye by groundwater treatment waste: experimental and modeling

机译:地下水处理废物可持续去除阳极氧化铝染料:实验和建模

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摘要

Groundwater treatment waste (GWTW), as an environmentally friendly renewable nanomaterial, was implemented for the removal of anodized aluminum dye Sanodure Green (SG) from aqueous solutions. The capability of the SG metal complex dye removal was assessed by measuring solution decoloration and chromium elimination degree. GWTW was characterized using FTIR, SEM, EDX, TEM, XPS and surface area measurements. Kinetic curves were obtained by changing initial dye concentration, pH, temperature and adsorbent dose. Kinetic studies showed that up to 90 % of SG dye was removed within a contact time of 20 min. The adsorption of the dye was favourable at 293 K temperature in the acidic pH region (pH 1.5–2.0) with maximum adsorption capacity 185 mg g−1. Langmuir-Freundlich isotherm model as well as hyperbolic tangent, diffusion-chemisorption and Elovich kinetic models accurately describe the dye removal process. The calculated thermodynamic parameters confirmed that SG dye removal occurred spontaneously and exothermically. The magnitude of enthalpy change (ΔH° = −35.80 kJ mol−1) was in agreement with the electrostatic interaction. The adsorption potential of GWTW for SG dye removal was also evaluated using a real wastewater produced after dyeing of anodized aluminum.
机译:作为环保可再生纳米材料的地下水处理废物(GWTW)被实施为从水溶液中除去阳极氧化铝染料诱饵绿(SG)。通过测量溶液滤光和铬消除度来评估Sg金属复合染料去除的能力。使用FTIR,SEM,EDX,TEM,XPS和表面积测量来表征GWTW。通过改变初始染料浓度,pH,温度和吸附剂量来获得动力学曲线。动力学研究表明,在20分钟的接触时间内除去高达90%的SG染料。染料的吸附在酸性pH区(pH 1.5-2.0)中有利于293k温度,最大吸附容量为185mg g-1。 Langmuir-Freundlich等温模型以及双曲线切线,扩散 - 化学吸附和Elovich动力学模型准确描述了染料去除过程。计算的热力学参数证实SG染料去除自发和放热发生。焓变的幅度(ΔH°= -35.80kJ mol-1)与静电相互作用一致。还使用阳极氧化铝染色后产生的真正废水评价Sg染料去除的GWTW的吸附电位。

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