McGill R A, Pearce J M, Fortey N J, Watt J, Ault L, Parrish R R
NERC Isotope Geosciences Lab, University of Middlesex, Keyworth, UK.
Environ Geochem Health. 2003 Mar;25(1):25-32. doi: 10.1023/a:1021269419788.
By combining scanning electron microscopy (SEM) image analysis and laser ablation plasma ionisation multi-collector mass spectrometry (LA-PIMMS), high precision lead isotope analyses can be obtained from individual metal-rich particles. Soils from Wolverhampton and Nottingham were sampled on the basis of high Pb concentrations or brownfield location. Pressed powder pellets of each were rastered by LA-PIMMS to obtain a bulk Pb-isotope signature. The results plot along an apparent mixing line between the major sources of lead contamination in the UK, that is UK ore deposits and alkyl-lead from petrol additives (Australian ore). Two particularly lead-rich soils were chosen to investigate the lead distribution and isotope variability between size and density fractions. The fine-grained and low-density fractions contained most of the lead and have Pb-isotope ratios comparable with the bulk soils. By contrast, the small, lead-enriched denser fractions contained only a minor proportion of the total lead but Pb-isotope signatures indicating relative enrichment in one or other of the end-members from the mixing line. Further characterisation of individual Pb-rich grains is in progress.
通过结合扫描电子显微镜(SEM)图像分析和激光烧蚀等离子体电离多接收体质谱法(LA-PIMMS),可以从单个富金属颗粒中获得高精度的铅同位素分析结果。基于高铅浓度或棕地位置,对伍尔弗汉普顿和诺丁汉的土壤进行了采样。对每个土壤的压制粉末颗粒进行LA-PIMMS光栅扫描,以获得总体铅同位素特征。结果沿着英国铅污染主要来源之间的一条明显混合线绘制,即英国矿床和来自汽油添加剂的烷基铅(澳大利亚矿石)。选择了两种特别富含铅的土壤,以研究铅在大小和密度级分之间的分布以及同位素变异性。细粒和低密度级分含有大部分铅,其铅同位素比率与总体土壤相当。相比之下,小的、富含铅的较密集级分仅占总铅的一小部分,但铅同位素特征表明在混合线的一个或另一个端元中相对富集。对单个富铅颗粒的进一步表征正在进行中。