Department of Geological Sciences, University of Alabama, Box 870338, Tuscaloosa, AL 35487, USA.
J Hazard Mater. 2012 Aug 30;229-230:201-8. doi: 10.1016/j.jhazmat.2012.05.096. Epub 2012 Jun 4.
Potential leaching of trace elements from older, unlined fly ash disposal facilities is a serious threat to groundwater and surface water contamination. Therefore, effective methods for containing the pollutant elements within the unlined coal combustion products (CCPs) disposal facilities are required to minimize any potential impact of leachate emanating from such facilities into the nearby environment. Because surfactant-modified zeolite (SMZ) has the potential to sequester both cationic and anionic trace elements from aqueous solutions, bench-scale batch and column experiments were performed to test its ability to remediate trace elements in leachates generated from both alkaline and acidic fly ash samples. Fly ash leachate treatment results showed the potential application of SMZ as an effective permeable reactive barrier (PRB) material to control the dispersion of heavy metals and metalloids from ash disposal sites. Quantitative comparison of the elemental composition of SMZ-treated and untreated leachates indicated that SMZ was effective in decreasing the concentrations of trace elements in fly ash leachates. Similarly, SMZ treatment column experiments showed the delayed peak leaching events and overall reductions in leachate concentrations of trace elements. The effectiveness of SMZ column treatments, however, decreased with time potentially due to the saturation of sorption sites.
从较旧的无衬砌飞灰处置设施中浸出痕量元素是对地下水和地表水造成污染的严重威胁。因此,需要采用有效的方法将污染物元素封存在无衬砌煤燃烧产物(CCP)处置设施内,以最大程度地减少此类设施渗出的浸出液对附近环境的潜在影响。由于表面活性剂改性沸石(SMZ)有可能从水溶液中螯合阳离子和阴离子痕量元素,因此进行了批处理和柱实验,以测试其修复来自碱性和酸性飞灰样品浸出液中痕量元素的能力。飞灰浸出液处理结果表明,SMZ 作为一种有效的可渗透反应屏障(PRB)材料具有潜在的应用前景,可控制重金属和类金属从灰渣处置场的扩散。对 SMZ 处理和未处理浸出液的元素组成进行定量比较表明,SMZ 可有效降低飞灰浸出液中痕量元素的浓度。同样,SMZ 处理柱实验表明,浸出液中痕量元素的峰值浸出事件和总体浓度均有所延迟和降低。然而,SMZ 柱处理的有效性随时间降低,这可能是由于吸附位的饱和所致。