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Performance evaluation of eggshell waste material for remediation of acid mine drainage from coal dump leachate

机译:煤壳废料治疗煤矸石渗滤液中蛋壳废料的性能评价

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In this study, eggshell (ES) powder was evaluated as a cheap and biocompatible waste material for the pretreatment of acid mine drainage (AMD) leachate from coal dump. First, the composition of the AMD and physiochemical properties of the ES powder were determined using various standard characterization techniques. Then the removal efficiency of the target metal contaminants and the acid-neutralisation effect were explored in batch and kinetic set-ups. Thereafter, the settling rate of sludge formed after separately reacting ES and limestone powders with AMD was explored. Results revealed that the AMD leachate was highly acidic and contaminated with both cations and anions. Thermogravimetric analysis (TGA) and X-ray fluorescence (XRF) analyses demonstrated that ES powder was thermally stable up to 700 degrees C and CaO was the main component, respectively. Scanning electron microscopy (SEM) and EDX spectra confirmed the removal of contaminants. Both the decrease in particle size and increase in mass of ES enhanced the treatment efficiency. Although complete Fe and Al removal was achieved, Mn and sulphates posed a challenge as they were partially removed. Meanwhile, ES demonstrated superior acid-neutralizing effect to limestone and the mine water clarity and pH were shifted to acceptable levels. Both Fe and Al removal proceeded through an exothermic process while it was opposite for Mn. Kinetics were rapid and the sludge from ES powder settled faster compared with that from limestone powder. Cost analysis indicated that significant financial savings can be realised by substituting limestone with ES material. The findings suggest that ES waste could be an efficient and cheap material in the pre-treatment of AMD effluents.
机译:在本研究中,蛋壳(ES)粉末评价为廉价和生物相容性废料,用于预处理煤渣的酸性矿渗滤液。首先,使用各种标准表征技术测定ES粉末的AMD和物理化学性质的组成。然后用分批和动力学设置探索靶金属污染物的去除效率和酸中和效果。此后,探讨了分别使ES和石灰石粉末与AMD分开反应后形成的污泥稳定速率。结果表明,AMD渗滤液高度酸性和污染阳离子和阴离子。热重分析(TGA)和X射线荧光(XRF)分析证明ES粉末热稳定至700℃,CaO分别是主要成分。扫描电子显微镜(SEM)和EDX光谱证实了污染物的去除。粒度的降低和ES质量增加增强了治疗效率。尽管达到了完全的Fe和Al去除,但Mn和硫酸盐由于部分除去而构成挑战。同时,ES对石灰石和矿井水清晰度和pH转向可接受的水平,尤为酸性中和效果。均通过放热过程进行Fe和Al去除,同时它与Mn相反。动力学快速,与ES粉末的污泥与石灰石粉末相比稳定。成本分析表明,可以通过用ES材料替代石灰石来实现重大的金融储蓄。研究结果表明,ES浪费可能是在AMD流出物的预处理中有效和廉价的材料。

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