Everglades National Park, South Florida Ecosystem Office, Homestead, FL, 33030, USA.
Environ Monit Assess. 2013 Aug;185(8):6311-32. doi: 10.1007/s10661-012-3027-9. Epub 2013 Jan 4.
A comprehensive environmental evaluation was completed on 20 metals: two reference metals (Fe, Al) and several minor trace metals (As, Ba, Co, Cr, Cu, Mn, Ni, Pb, V, and Zn) for surface soils and sediments collected from 50 sites in Everglades National Park (ENP), the coastal fringes of Biscayne National Park (BNP), and Big Cypress National Preserve. Samples were prepared by acid digestion (EPA3050) and analyzed by ICP/MS detection (EPA6020). Although no widespread contamination was detected across the two parks and one preserve, there were some specific areas where metal concentrations exceeded Florida's ecological thresholds, suggesting that some metals were of concern. A screening-level evaluation based on a proposed effect index grouped trace metals by their potential for causing negligible, possible, and probable effects on the biota. For example, Cu in BNP and Cr and Pb in ENP were considered of concern because their adverse effect likelihood to biota was assessed as probable; consequently, these trace metals were selected for further risk characterization. Also, stations were ranked based on a proposed overall contamination index that showed that: site BB10 in BNP and sites E3 and E5 in ENP had the highest scores. The first site was located in a marina in BNP, and the other two sites were along the eastern boundary of ENP adjacent to current or former agricultural lands. An assessment tool for south Florida protected lands was developed for evaluating impacts from on-going Everglades restoration projects and to assist State and Federal agencies with resource management. The tool consists of enrichment plots and statistically derived background concentrations based on soil/sediment data collected from the two national parks and one preserve. Finally, an equally accurate but much simplified approach is offered for developing enrichment plots for other environmental settings.
对来自大沼泽地国家公园(ENP)、比斯坎湾国家公园(BNP)沿海边缘和大柏树国家保护区的 50 个地点采集的表层土壤和沉积物中 20 种金属(两种参比金属(Fe、Al)和几种微量痕量金属(As、Ba、Co、Cr、Cu、Mn、Ni、Pb、V 和 Zn)进行了全面的环境评估。样品通过酸消解(EPA3050)制备,并通过电感耦合等离子体质谱检测(EPA6020)进行分析。尽管在这两个公园和一个保护区内没有发现广泛的污染,但在一些特定区域,金属浓度超过了佛罗里达州的生态阈值,表明一些金属受到关注。基于提出的效应指数的筛选水平评估,根据对生物群造成可忽略、可能和可能影响的潜在可能性对痕量金属进行了分组。例如,BNP 中的 Cu、ENP 中的 Cr 和 Pb 被认为是令人关注的,因为它们对生物群的不利影响可能性被评估为可能;因此,这些痕量金属被选为进一步的风险特征描述。此外,还根据提出的总体污染指数对站点进行了排名,该指数表明:BNP 中的 BB10 站点和 ENP 中的 E3 和 E5 站点得分最高。第一个站点位于 BNP 的一个码头,另外两个站点位于 ENP 的东部边界,毗邻当前或以前的农田。为评估正在进行的大沼泽地恢复项目对南佛罗里达州保护区的影响,并协助州和联邦机构进行资源管理,开发了一种南佛罗里达州保护区评估工具。该工具包括基于从两个国家公园和一个保护区收集的土壤/沉积物数据得出的富集图和统计衍生的背景浓度。最后,还提供了一种同样准确但简化得多的方法,用于为其他环境设置开发富集图。