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首页> 外文期刊>Water, air and soil pollution >Remediation of Metal Contaminated Simulated Acid Mine Drainage Using a Lab-Scale Spent Mushroom Substrate Wetland
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Remediation of Metal Contaminated Simulated Acid Mine Drainage Using a Lab-Scale Spent Mushroom Substrate Wetland

机译:使用实验室凝固的蘑菇衬底湿地修复金属污染的模拟酸性矿泉水排水

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摘要

The performance of an innovative pilot-scale spent mushroom substrate wetland for the attenuation of simulated acid mine drainage (SAMD) similar in composition to wastewater from the Irish mining region in Avoca, Co. Wicklow was investigated. The small-scale surface flow wetland, consisting of four cells in triplicate, measuring 0.46 m in width, 0.622 m in length and 0.489 m in depth, received approximately 4.32 l/day of simulated acid mine drainage. Over a period of 800 days, average removal efficiencies of Al (99%), Zn (99%), Cu (99%), Fe (97%) and Pb (97%) were recorded, with no removal noted for Mn. These high removal rates were found to be comparable with other published results and in most cases surpassed removal rates of published results. Despite the reduction in pH and alkalinity over the duration of the trial, the rise in sulphate concentrations and the production of ammonia within the system were of concern, especially if a similar treatment system was utilised on a large-scale basis. Temperature was also found to have an effect on metal removal rates, with poor removal rates recorded at low-temperature events ( 1 degrees C). The high metal removal rates of the system still make it a very attractive and environmentally sustainable remediation technology, which could be further expanded to include other passive treatment technologies, to enhance and increase the longevity of the system.
机译:采用了来自Avoca,Co. Wicklow的爱尔兰矿区的模拟酸性矿山排水(SAMD)衰减模拟酸性矿山排水(SAMD)的衰减性能。小规模的表面流动湿地,由四份细胞三次,宽度为0.46米,长度为0.622米,深度为0.489米,接受了大约4.32L /天的模拟酸矿喷射。在800天的时间内,记录了Al(99%),Zn(99%),Cu(99%),Fe(97%)和Pb(97%)的平均去除效率,Mn未注明去除。发现这些高拆除率与其他公开的结果相当,并且在大多数情况下,出现了已发表结果的去除率。尽管试验期间的pH和碱度降低,但在系统内硫酸盐浓度的增加和氨的产生是关注的,特别是如果类似的处理系统以大规模使用。还发现温度对金属去除率产生影响,在低温事件(& 1℃)下记录不良的去除率。系统的高金属去除率仍然使其成为一种非常有吸引力和环境可持续的修复技术,可以进一步扩展到包括其他被动处理技术,以增强和增加系统的寿命。

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