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Treatment of mining waste leachate by the adsorption process using spent coffee grounds

机译:使用废咖啡渣治疗吸附过程的采矿废物渗滤液

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The removal of heavy metals from mining waste leachate by spent coffee grounds has been investigated. In synthetic solutions, metal uptake was studied in batch adsorption experiments as a function of pH, contact time, initial metal concentration, adsorbent concentration, particle size, and the effect of co-ions (Na, K, Ca, Mg, Cu, Cd, Ni, Zn). Results showed that adsorption was significantly affected by pH, showing the highest affinity within a pH range of 5-7. Sorption of heavy metals reached equilibrium in 3 h. Removal percentages of metals ions increased with increasing dosage. Particle size did not have a significant influence on metal uptake. The adsorption of heavy metals was found to fit Langmuir and Freundlich isotherms. Maximum Zn, Cd and Ni uptake values were calculated as 10.22, 5.96 and 7.51 mg/g, respectively, using unwashed coffee grounds (UCG) as the adsorbent and 5.36, 4.28 and 4.37 mg/g when employing washed coffee grounds as the adsorbent. The presence of co-ions inhibited the uptake of heavy metals, divalent ions having a more negative effect than monovalent ions. The results obtained in the experiments with mining waste leachate showed that UCG is effective in removing heavy metals.
机译:研究了废咖啡渣中取出的重金属从采矿废物渗滤液中取出。在合成溶液中,在批量吸附实验中研究金属摄取,作为pH,接触时间,初始金属浓度,吸附剂浓度,粒度,粒度和共同效果(Na,K,Ca,Mg,Cu,Cd ,ni,zn)。结果表明,吸附受到pH的显着影响,显示在5-7的pH范围内的最高亲和力。重金属的吸附在3小时内达到平衡。除去剂量的拆除百分比随着剂量的增加而增加。粒径对金属摄取没有显着影响。发现重金属的吸附适合Langmuir和Freundlich等温机。最大Zn,Cd和Ni摄取值分别计算为10.22,5.96和7.51mg / g,使用未洗过的咖啡渣(UCG)作为吸附剂,5.36,4.28和4.37mg / g采用洗涤的咖啡渣作为吸附剂。共离子的存在抑制了重金属的吸收,比单价离子具有更负面影响的二价离子。采矿废物渗滤液实验中获得的结果表明,UCG在除去重金属方面是有效的。

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