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Using Acid-Activated Azad Kashmir Clays to Remove Cadmium and Lead Ions from Wastewater

机译:使用酸活化的Azad Kashmir粘土从废水中除去镉和铅离子

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The adsorption of cadmium and lead ions on purified and acid-activated Azad Kashmir clays were investigated in a batch system. Solutions of lead and cadmium having concentrations typically found in industrial wastewater were used to develop a cheap and reliable adsorbent using local clay for removal of heavy metals from wastewater. The raw clay sample was purified and activated by sulphuric acid before being used for adsorption study. It was characterized by X-ray diffraction and chemical analysis according to the International Standards of Testing (ASTM C 323-56, 2016). The effects of factors like pH, adsorbent quantity, concentration of adsorbate and temperature were studied for both metals. The Langmuir and Freundlich models were used for analysis of adsorption equilibrium. Thermodynamic parameters were calculated. Azad Kashmir clay removed lead and cadmium with maximum adsorption capacity of 3.93 mg metal/g and 7.81 mg metal/g of clay (30 degrees C; pH 7.3). These values were calculated by applying Langmuir and Freundlich adsorption isotherms to the actual experimental results obtained in this study. The thermodynamic data indicated that the adsorption reaction for cadmium is spontaneous and exothermal while it is endothermic for lead. The Freundlich model provided best fit for sorption isotherms for both cadmium and lead.
机译:在批量系系统中研究了镉和铅离子对纯化和酸活化的Azad Kashmir Clays的吸附。使用通常在工业废水中发现的铅和镉的溶液用于使用局部粘土开发廉价且可靠的吸附剂,以从废水中除去重金属。在用于吸附研究之前,通过硫酸纯化并活化原料粘土样品。它的特征在于X射线衍射和化学分析根据国际检测标准(ASTM C 323-56,2016)。对两个金属进行了pH值,吸附量,吸附剂浓度和温度等因素的影响。 Langmuir和Freundlich模型用于分析吸附均衡。计算热力学参数。 Azad Kashmir粘土除去铅和镉,最大吸附容量为3.93mg金属/ g和7.81mg金属/ g粘土(30℃; pH 7.3)。通过将Langmuir和Freundlich吸附等温物应用于本研究中获得的实际实验结果来计算这些值。热力学数据表明,镉的吸附反应是自发性和放热的,而引线的吸热是自发性和放热。 Freundlich模型为镉和铅的吸附等温线提供最适合。

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