首页> 外文期刊>Environmental toxicology and chemistry >PREPARATION AND CHARACTERIZATION OF NICKEL-SPIKED FRESHWATER SEDIMENTS FOR TOXICITY TESTS: TOWARD MORE ENVIRONMENTALLY REALISTIC NICKEL PARTITIONING
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PREPARATION AND CHARACTERIZATION OF NICKEL-SPIKED FRESHWATER SEDIMENTS FOR TOXICITY TESTS: TOWARD MORE ENVIRONMENTALLY REALISTIC NICKEL PARTITIONING

机译:毒性试验用镍钉淡水沉积物的制备和表征:向更多环境逼真的镍分配

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摘要

Two spiking methods were compared and nickel (Ni) partitioning was evaluated during a series of toxicity tests with 8 different freshwater sediments having a range of physicochemical characteristics. A 2-step spiking approach with immediate pH adjustment by addition of NaOH at a 2:1 molar ratio to the spiked Ni was effective in producing consistent pH and other chemical characteristics across a range of Ni spiking levels. When Ni was spiked into sediment having a high acid-volatile sulfide and organic matter content, a total equilibration period of at least 10 wk was needed to stabilize Ni partitioning. However, highest spiking levels evidently exceeded sediment binding capacities; therefore, a 7-d equilibration in toxicity test chambers and 8 volume-additions/d of aerobic overlying water were used to avoid unrealistic Ni partitioning during toxicity testing. The 7-d pretest equilibration allowed excess spiked Ni and other ions from pH adjustment to diffuse from sediment porewater and promoted development of an environmentally relevant, 0.5- to 1-cm oxic/suboxic sediment layer in the test chambers. Among the 8 different spiked sediments, the logarithm of sediment/porewater distribution coefficient values (log K_d) for Ni during the toxicity tests ranged from 3.5 to 4.5. These K_d values closely match the range of values reported for various field Ni-contaminated sediments, indicating that testing conditions with our spiked sediments were environmentally realistic.
机译:比较了两种加标方法,并在一系列具有8种不同理化特性的淡水沉积物的毒性试验中评估了镍(Ni)的分配。通过在加标的Ni中以2:1摩尔比添加NaOH来立即调节pH的两步加标方法可有效地在一系列Ni加标水平上产生一致的pH值和其他化学特性。当将镍掺入具有高酸挥发性硫化物和有机物含量的沉积物中时,需要至少10 wk的总平衡时间来稳定镍的分配。但是,最高峰值明显超过了泥沙的吸附能力;因此,在毒性试验箱中进行了7天的平衡,并在每天8次体积的需氧上水中进行了平衡,以避免在毒性试验中镍的分配不切实际。 7天的预测试平衡使pH调节过程中过量的尖峰镍离子和其他离子从沉积物孔隙水中扩散,并促进了测试室内环境相关的0.5至1厘米的含氧/含氧沉积物层的发展。在8种不同的加标沉积物中,镍在毒性试验期间的对数沉积物/孔隙水分布系数值(log K_d)的对数范围为3.5至4.5。这些K_d值与各种现场被镍污染的沉积物报告的值范围非常匹配,这表明我们加标沉积物的测试条件在环境上是现实的。

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