>This paper studies the removal of crystal violet (CV) dye by electrocoagulation (EC) process using bipolar iron electrodes. Numerous ope'/> Modeling adsorption kinetic of crystal violet removal by electrocoagulation technique using bipolar iron electrodes
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Modeling adsorption kinetic of crystal violet removal by electrocoagulation technique using bipolar iron electrodes

机译:用双极铁电极采用电凝制技术建模吸附动力学

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>This paper studies the removal of crystal violet (CV) dye by electrocoagulation (EC) process using bipolar iron electrodes. Numerous operating parameters such as initial CV solution concentration, speed of agitation, number of electrodes, type and quantity of supporting electrolyte, temperature- and initial pH were investigated. A complete removal of 10 mg/L CV was achieved within 10 min at pH 7, 0.5 g NaCl, 1 LCV, 750 rpm, 9 sheets, 17.36 mAcm2, and 25 °C. The performed energy-dispersive X-ray spectroscopy (EDAX), scanning electron microscopy (SEM) and Fourier transform infrared spectroscopy (FTIR) analyses confirmed the adsorption of CV onto the insoluble iron hydroxide flocs. Amongst the studied adsorption isotherms models, Langmuir and Dubinin–Radushkevich were the most applicable. The kinetic of adsorption of CV onto flocs during the EC operation was studied using the pseudo-first-order, pseudo-second-order, and intraparticulate diffusion models, with results affirming that the adsorption process proceeded according to the pseudo-second-order model. The study of thermodynamic parameters (ΔG0, ΔH0, and ΔS0,) of the CV removal at different temperatures reflected the feasibility of the spontaneous randomness of endothermic adsorption, especially at lower temperatures. The multiple regression equation of the removal of CV by EC technique under the different studied conditions was predicted.]]>
机译:<![cdata [ >本文研究了使用双极的电凝(ec)过程去除晶体紫(cv)染料铁电极。许多操作参数,例如初始CV溶液浓度,搅拌速度,电极数,载体电解质的类型和量,温度和初始pH。在pH 7,0.5g NaCl,1 LCV,750rpm,9片,17.36mcm 2 和25℃下在pH 7,0.5g NaCl,1℃,9片内完成10mg / L CV的完全除去。所执行的能量色散型X射线光谱仪(EDAX),扫描电子显微镜(SEM)和傅里叶变换红外光谱(FTIR)分析证实CV的吸附在不溶性氢氧化铁絮凝物。在学习的吸附等温机构中,Langmuir和Dubinin-Radushkevich是最适用的。使用伪一阶,伪二阶和底盖一阶扩散模型研究了EC操作期间CV的吸附在絮凝物中的动力学,结果肯定了根据伪二阶模型进行的吸附过程。热力学参数的研究(Δ<斜体> g 0 ,Δ<斜体> h 0 ,Δ<斜体> s 0 反映了吸热性吸附的自发随机性的可行性,特别是在较低温度下。预测了在不同研究条件下通过EC技术去除CV的多元回归方程。 ]]>

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