Hardison Donald W, Ma Lena Q, Luongo Thomas, Harris Willie G
Soil and Water Science Department, University of Florida, P.O. Box 110290, Gainesville, FL 32611-0290, USA.
Sci Total Environ. 2004 Jul 26;328(1-3):175-83. doi: 10.1016/j.scitotenv.2003.12.013.
Contamination of shooting range soils from the use of Pb bullets is under increasing scrutiny. Past research on Pb contamination of shooting ranges has focused on weathering reactions of Pb bullets in soil. The objective of this study was to determine the significance of abrasion of Pb bullets in contributing to soil Pb contamination. This was accomplished by firing a known mass of bullets into sand and analyzing for total Pb after removing bullets, through field sampling of a newly opened shooting range, and a laboratory weathering study. Forty-one mg of Pb were abraded per bullet as it passed through the sand, which accounted for 1.5% of the bullet mass being physically removed. At a shooting range that had been open for 3 months, the highest Pb concentration from the pistol range berm soil was 193 mg/kg at 0.5 m height, and from the rifle range berm soil was 1142 mg/kg at 1.0 m height. Most soils from the field abrasion experiment as well as soil collected from the rifle range had SPLP-Pb >15 microg/l (Synthetic Precipitation Leaching Procedure). Typically, Pb concentration in the rifle range was greater than that of the pistol range. Based on a laboratory weathering study, virtually all metallic Pb was converted to hydrocerussite (Pb3(CO3)2(OH)2), as well as to a lesser extent cerussite (PbCO3) and massicot (PbO) within one week. Our study demonstrated that abrasion of lead bullets and their subsequent weathering can be a significant source of lead contamination in soils of a newly opened shooting range.
使用铅制子弹导致射击场土壤污染正受到越来越多的审视。过去关于射击场铅污染的研究主要集中在土壤中铅制子弹的风化反应。本研究的目的是确定铅制子弹磨损对土壤铅污染的影响程度。通过将已知质量的子弹射入沙子中,并在取出子弹后分析总铅含量,以及对一个新开放的射击场进行现场采样和实验室风化研究来实现这一目的。每颗子弹穿过沙子时会磨损41毫克铅,这占子弹被物理去除质量的1.5%。在一个开放了3个月的射击场,手枪靶场护堤土壤在0.5米高度处的最高铅浓度为193毫克/千克,步枪靶场护堤土壤在1.0米高度处的最高铅浓度为1142毫克/千克。现场磨损实验中的大多数土壤以及从步枪靶场采集的土壤,其模拟降水淋溶程序铅(SPLP-Pb)>15微克/升。通常,步枪靶场的铅浓度高于手枪靶场。基于实验室风化研究,几乎所有金属铅在一周内都转化为了羟铅矿(Pb3(CO3)2(OH)2),以及少量的白铅矿(PbCO3)和密陀僧(PbO)。我们的研究表明,铅制子弹的磨损及其随后的风化可能是新开放射击场土壤铅污染的一个重要来源。