Dep. of Geology & Plantary Science, Univ. of Pittsburg, Pittsburgh, PA 15260, USA.
J Environ Qual. 2012 Jan-Feb;41(1):144-54. doi: 10.2134/jeq2011.0222.
Sequential leaching experiments on coal utilization by-products (CUB) were coupled with chemical and strontium (Sr) isotopic analyses to better understand the influence of coal type and combustion processes on CUB properties and the release of elements during interaction with environmental waters during disposal. Class C fly ash tended to release the highest quantity of minor and trace elements-including alkaline earth elements, sodium, chromium, copper, manganese, lead, titanium, and zinc-during sequential extraction, with bottom ash yielding the lowest. Strontium isotope ratios ((87)Sr/(86)Sr) in bulk-CUB samples (total dissolution of CUB) are generally higher in class F ash than in class C ash. Bulk-CUB ratios appear to be controlled by the geologic source of the mineral matter in the feed coal, and by Sr added during desulfurization treatments. Leachates of the CUB generally have Sr isotope ratios that are different than the bulk value, demonstrating that Sr was not isotopically homogenized during combustion. Variations in the Sr isotopic composition of CUB leachates were correlated with mobility of several major and trace elements; the data suggest that arsenic and lead are held in phases that contain the more radiogenic (high-(87)Sr/(86)Sr) component. A changing Sr isotope ratio of CUB-interacting waters in a disposal environment could forecast the release of certain strongly bound elements of environmental concern. This study lays the groundwork for the application of Sr isotopes as an environmental tracer for CUB-water interaction.
对煤利用副产物(CUB)进行连续浸出实验,并结合化学分析和锶(Sr)同位素分析,以更好地了解煤类型和燃烧过程对 CUB 特性的影响,以及在处置过程中与环境水相互作用时元素的释放。C 级飞灰在连续提取过程中倾向于释放最多数量的微量和痕量元素,包括碱土金属、钠、铬、铜、锰、铅、钛和锌,而底灰的释放量最低。CUB 样品(CUB 的总溶解)中的锶同位素比值((87)Sr/(86)Sr)在 F 级灰中通常高于 C 级灰。CUB 总溶解比值似乎受入炉煤中矿物质的地质来源以及脱硫处理中添加的 Sr 的控制。CUB 浸出液的 Sr 同位素比值通常与总溶解值不同,表明 Sr 在燃烧过程中没有同位素均匀化。CUB 浸出液中 Sr 同位素组成的变化与几种主要和痕量元素的迁移性相关;数据表明,砷和铅存在于含有更多放射性(高 (87)Sr/(86)Sr)成分的相中。处置环境中 CUB-水相互作用的 CUB 相互作用水的 Sr 同位素比值变化可能预示着某些强烈结合的环境关注元素的释放。本研究为 Sr 同位素作为 CUB-水相互作用的环境示踪剂的应用奠定了基础。