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Effective Activated Carbon as Adsorbent for the Removal of Copper(II) Ions from Wastewater

机译:有效活性炭作为吸附剂,用于从废水中除去铜(II)离子

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Nitric acid activated carbons prepared from the barks of Limonia acidissima plant (NALABC) and stems of Hibiscus cannabinus plant (NAHCSC) are investigated as adsorbents for the removal of Cu(II) ions from waste water using batch methods of extraction. Various extraction conditions namely, pH, time of equilibration, sorbent concentration, initial concentration of Cu(II) ions and temperature, are optimized for the maximum removal. Substantial amounts of Cu(II) are extracted in the pH range: 3 to 9 and adsorption capacities are 19.6 mg/g for NALABC and 29.4 mg/g for NAHCSC, which are more than many active carbons developed in the previous works. It is interesting to note that the adsorbents are effective in acidic, neutral and also in basic conditions of the water samples and thus paving the way for applying these adsorbents in wide pH ranges of diverse samples. Five-fold excess of common co-ions that are normally present in water, have marginally affected the % removal. Thermodynamic parameters are evaluated for the spontaneity and nature of adsorption processes. The adsorption phenomenon is analyzed using Langmuir and Freundlich isotherm models and noted that Langmuir isotherm model suits better indicating the uniform and mono-layer nature of adsorption. Kinetics of adsorption is analyzed and found that pseudo second-order kinetics preferably explains the adsorption of Cu(II). The spent NALABC and NAHCSC can be regenerated and subsequently used. The adsorbents developed are found to be effective in removing Cu(II) ions from the real water samples collected from polluted lakes and copper based industries.
机译:从柠檬酵母酸碱植物(NALABC)和芙蓉大麻植物(NaHCSC)的茎中制备的硝酸活性碳作为吸附剂,用于使用分批萃取方法从废水中除去Cu(II)离子。各种提取条件即,pH,平衡,吸附剂浓度,Cu(II)离子初始浓度和温度的初始浓度,用于最大的去除。在pH范围内提取大量的Cu(II):3至9,吸附能力为NALABC 19.6mg / g,NAHCSC为29.4mg / g,这是在以前的作品中开发的许多活性碳。值得注意的是,吸附剂在酸性,中性和水上的基本条件下是有效的,因此铺平了在不同样品的宽pH范围内施加这些吸附剂的方式。通常存在于水中的常见共同离子的五倍过量影响,略微影响%去除。评估热力学参数的吸附过程的自发性和性质。使用Langmuir和Freundlich等温线进行分析吸附现象,并指出Langmuir等温模型适合表明吸附的均匀和单层性质。分析吸附的动力学,发现伪二阶动力学优选解释Cu(II)的吸附。可以再生并随后使用废纸和NaHCSC。发现的吸附剂被发现有效地从污染湖泊和铜基行业收集的真实水样中除去Cu(II)离子。

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