Utilization of Activated Carbon for the Removal of Ni Metal from Industrial Liquid Waste

H. Tahir, M. Qadri, Uroos Alam, N. Akhtar, M. Sultan
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Abstract

Environmental pollution caused by toxic metals seems to occur globally. Metal intoxicated wastewater can be challenging to health safety. The high concentration of pollutants is required to be removed before the discharge of wastewater into open waste streams. The present study relates the monitoring of heavy metals in the industrial waste coming from Shairshah, Lyari SITE industrial area and control sites selected from Clifton beach of Karachi (Pakistan). Concentrations of selected trace metals, Cr, Fe, Hg, Na, K, Cd, Pb, Ni, Zn, Mo, Mn and Cu were estimated by using Atomic Absorption Spectrophotometer, Flame Photometer and 200 Multi parameter Ion Specific Meter under standard analytical conditions. Statistical methods of relevance were applied to check the accuracy of the system. Selective removal of Ni metal from waste water was carried out by adsorption process using activated carbon prepared from agricultural waste. The effectiveness of the adsorption process has been tested under the optimized conditions of temperature, concentration, stay time and amount of adsorbent. Adsorption isotherm models like Freundlich and Langmuir were applied to determine the feasibility of process by finding the values oftheir respective constants. The R values show that Langmuir model was the best fitted adsorption model. The feasibility of adsorption process was determined by RL factor. Thermodynamic parameters such as free energy (ΔG ), enthalpy (ΔH ) and entropy (ΔS ) of the system were calculated. The sorption free energy (Es) was also estimated. The pHpzc of adsorbent was also estimated by adopting pH drift method. The percentage removal and distribution coefficient (KD) values for Ni removal were also determined. The present system represents that Ni and other metals can be effectively removed by employing adsorption method using low cost natural adsorbents.
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活性炭去除工业废液中金属镍的研究
有毒金属造成的环境污染似乎在全球范围内都在发生。金属中毒废水对健康安全构成挑战。在将废水排放到露天废物流之前,需要去除高浓度的污染物。本研究涉及监测来自Shairshah, Lyari SITE工业区和卡拉奇(巴基斯坦)Clifton海滩选定的控制地点的工业废物中的重金属。在标准分析条件下,采用原子吸收分光光度计、火焰光度计和200多参数离子比谱仪测定了选定微量金属Cr、Fe、Hg、Na、K、Cd、Pb、Ni、Zn、Mo、Mn和Cu的浓度。应用相关性统计方法对系统的准确性进行检验。以农业废弃物为原料制备活性炭,采用吸附法对废水中的金属镍进行了选择性去除。在温度、浓度、停留时间和吸附剂用量的优化条件下,对吸附过程的效果进行了测试。Freundlich和Langmuir等吸附等温线模型通过计算各自的常数值来确定过程的可行性。R值表明Langmuir模型是最适合的吸附模型。以RL因子确定吸附工艺的可行性。计算了系统的自由能(ΔG)、焓(ΔH)和熵(ΔS)等热力学参数。并对吸附自由能(Es)进行了估计。采用pH漂移法测定了吸附剂的pHpzc。测定了Ni去除率和分布系数(KD)值。该体系表明,采用低成本天然吸附剂的吸附法可以有效去除镍等金属。
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