首页> 外文期刊>Environmental toxicology and chemistry >Toxicity of silver in water and sediment to the freshwater amphipod Hyalella azteca.
【24h】

Toxicity of silver in water and sediment to the freshwater amphipod Hyalella azteca.

机译:银在水和沉积物中的毒性对淡水两栖动物Hyalella azteca。

获取原文
获取原文并翻译 | 示例
       

摘要

Hyalella azteca was exposed to Ag as AgNO3 over a 10-d period in water and two lake sediments that were selected on the basis of their differences in metal-binding properties. The median lethal concentrations (LC50s) for waterborne exposures were 5.4 and 4.9 microg/L for total and dissolved Ag, respectively. In the sediment containing a lesser quantity of total Ag-binding ligands (i.e., Bond Lake, Douglas County, WI, USA, sediment), an Ag-amended sediment toxicity test resulted in a 10-d LC50 of 0.084 g (i.e., 84,000 microg) Ag/kg dry sediment or 8.6 microg Ag/L of pore water (PW). The no-observed-effect concentration (NOEC) to lowest-observed-effect concentration (LOEC) range was 0.012 to 0.031 g Ag/kg dry sediment, or less than 5.0 to 6.0 microg Ag/L of PW. In the sediment with a greater quantity of total Ag-binding ligands (i.e., West Bearskin Lake, Cook County, MN, USA, sediment), the 10-d LC50 was 2.98 g Ag/kg dry sediment, and the NOEC to LOEC range was 2.15 to 4.31 g Ag/kg dry sediment. Because "dissolved" concentrations of Ag in PW were less than 5.0 microg/L at the critical exposures in the latter test, the bioavailable and toxic form of Ag may have been a weakly associated coprecipitate or colloidal complex with hydrous iron oxides that competitively partitioned to the surface of the gills.
机译:Hyalella azteca在超过10天的时间内暴露于Ag和AgNO3的水中,并根据其金属结合特性的差异选择了两个湖泊沉积物。暴露于水中的总致命和溶解Ag的中值致死浓度(LC50s)分别为5.4和4.9 microg / L。在含有较少的总Ag结合配体的沉积物中(即美国威斯康星州道格拉斯县邦德湖的沉积物),经Ag修正的沉积物毒性试验得出0.084 g(即84,000)的10天LC50 microg)Ag / kg干沉积物或8.6 microg Ag / L的孔隙水(PW)。无观察到的浓度(NOEC)至最低观察到的浓度(LOEC)范围为0.012至0.031 g Ag / kg干沉积物,或小于5.0至6.0 microg Ag / L PW。在具有大量总的Ag结合配体的沉积物中(即美国明尼苏达州库克县的西熊皮湖,沉积物),10天LC50为2.98 g Ag / kg干沉积物,NOEC至LOEC范围Ag / kg干沉积物为2.15至4.31 g Ag。由于在后一种测试中的关键暴露条件下,PW中“溶解”的Ag浓度小于5.0 microg / L,因此Ag的生物利用度和有毒形式可能是与含水氧化铁的弱缔合共沉淀或胶体复合物,竞争性地分配为g的表面。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号