首页> 外文期刊>Zeitschrift fur Physikalische Chemie: International Journal of Research in Physical Chemistry and Chemical Physics >Decolourization of Reactive Dye from Aqueous Solution using Electrocoagulation: Kinetics and Isothermal Study
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Decolourization of Reactive Dye from Aqueous Solution using Electrocoagulation: Kinetics and Isothermal Study

机译:使用电凝胶水溶液的反应性染料去脱色:动力学和等温研究

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摘要

Reactive dyes are essential materials for the modern lifestyle due to rapid industrialization and urbanization, but they cause adverse effects on the environment. This research work aimed to decolourize the synthetic aqueous solution containing Reactive Black B (RBB) dye using electrocoagulation (EC) process with iron electrodes in batch reactor. The effect of operational parameters such as initial pH (3–9), the distance between electrodes (0.5–2 cm), current density (1.1–8.4 mA/cm2) and initial dye concentration (100–400 mg/L), was investigated in the presence of sodium chloride to maintain the conductivity of electrolytes. Under optimal value of process parameters, high decolourization (99.6%) was obtained at 25 min. The experimental data showed that pseudo-second order kinetics with a correlation coefficient (R2 = 0.97) and Sips isotherm with a correlation coefficient (R2 = 0.98) were found to be well fitted for kinetic and adsorption equilibrium models, respectively. The economic efficiency was also calculated on the basis of electrical energy consumption (EEC), specific electrical energy consumption (SEEC), and current efficiency, respectively. Moreover, characterization of EC generated sludge was also carried out by proximate analysis, IR spectra and XRD analysis. The results revealed that EC process using Fe electrode is quite efficient and clean process for decolourization of reactive dye from aqueous solution.
机译:由于快速的工业化和城市化,活性染料是现代生活方式的必需材料,但它们对环境产生不利影响。该研究旨在使用用批量反应器中的铁电极使用电凝(EC)方法脱色含有反应性黑B(RBB)染料的合成水溶液。操作参数如初始pH(3-9),电极之间的距离(0.5-2cm),电流密度(1.1-8.4 mA / cm2)和初始染料浓度(100-400mg / L)的效果是在氯化钠存在下研究以保持电解质的电导率。在工艺参数的最佳值下,在25分钟获得高脱色(99.6%)。实验数据表明,具有相关系数(R2 = 0.97)和具有相关系数(R2 = 0.98)的伪二次阶动力学分别用于分别用于动力学和吸附平衡模型的适合拟合。还根据电能消耗(EEC),特定电能消耗(SEEC)和当前效率来计算经济效率。此外,还通过近分析,IR光谱和XRD分析来进行EC产生污泥的表征。结果表明,使用Fe电极的EC工艺非常有效和清洁方法,用于从水溶液中脱色的反应性染料的脱色。

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