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A New Alternative and Efficient Low-Cost Process for the Removal of Reactive Dyes in Textile Wastewater by Using Soybean Hull as Adsorbent

机译:一种新的替代和有效的低成本过程,用于使用大豆船体作为吸附剂去除纺织废水中的活性染料

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The main objective of this work is to use soybean hull (SBH) waste as an adsorbent for the removal of two industrial textile dyes: Reactive Blue 21 (RB21) and Reactive Yellow 145 (RY145). Physical characterization of SBH and kinetic and equilibrium experiments were performed to determine the adsorption conditions. The best adsorption condition was pH 2.0 because the zero electrical charge of soybean hulls (pH(Z) = 0) is 5.27; thus, in an acidic pH, the adsorbent is positively charged, and the dyes keep their anionic charges due to the -SO3- and -OSO3- groups. Kinetic data were better represented by the Elovich kinetic model, evidencing two well-differentiated mass transfer regions, which agrees with a pseudo-second-order kinetic mechanism. The experimental data showed that RB21 and RY145 were fitted with Hill and Redlich-Peterson isotherm models, respectively. Consequently, the maximum adsorption capacities of SBH for RB21 and RY145 dyes were 149 mg/g and 87 mg/g, respectively. Dye adsorption in packed bed column was also assayed at different bed heights, flow rates, and inlet concentration of dyes. The Thomas, Yoon-Nelson, and modified dose-response (MDR) models fitted well to the breakthrough curves, the MDR model being the one with the highest correlation coefficients, with 96.5% and 94.4% removal of RY145 and RB21 dyes, respectively.
机译:这项工作的主要目的是使用大豆壳(SBH)废物作为去除两种工业纺织染料的吸附剂:反应性蓝21(RB21)和反应性黄色145(RY145)。进行SBH和动力学和均衡实验的物理表征以确定吸附条件。最好的吸附条件是pH 2.0,因为大豆壳的零电荷(pH(Z)= 0)为5.27;因此,在酸性pH中,吸附剂是带正电荷的,并且染料由于-SO 3和-OSO 3 - 基团而保持阴离子电荷。 Elovich动力学模型的动力学数据更好地代表,证明了两个分化的传质区,这与伪二阶动力学机制同意。实验数据表明,RB21和RY145分别配有山丘和雷尔希希彼得森等温模型。因此,RB21和RY145染料的SBH的最大吸附能力分别为149mg / g和87mg / g。在不同的床高度,流速和染料的入口浓度下也测定填充床柱中的染料吸附。托马斯,Yoon-Nelson和改性剂量 - 响应(MDR)模型适用于突破性曲线,MDR模型是相关系数最高的一个,分别去除RY145和RB21染料96.5%和94.4%。

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