Centre for Environmental Risk Assessment and Remediation, University of South Australia, Mawson Lakes Campus, Mawson Lakes, SA 5095, Australia.
Ecotoxicol Environ Saf. 2012 Apr;78:344-50. doi: 10.1016/j.ecoenv.2011.11.045. Epub 2012 Jan 4.
Long-term lead (Pb) contaminated soils from two lead-zinc smelters and a shooting range, along with freshly spiked control soil, were studied by means of chemical, biological or a physiological method to examine the effect of ageing on Pb bioavailability. The freshly Pb spiked control soil was subjected to an earthworm toxicity test to observe the avoidance and mortality response of the earthworms. Meanwhile, an extractable fraction of Pb on the spiked soil as a result of ageing was examined and further compared with physiologically based in vitro bioaccessibility extraction tests. Their differences in lethal concentration, LC(50), to the earthworm population from spiked soils varied substantially as a function of soil pH. The strong effect of ageing on toxicity was also reflected in the extractability of Pb which was far greater in acidic soil, labelled AC, compared to the alkaline soil, labelled BC. This demonstrates that the bioavailable fraction causing toxicity to earthworms was achieved at a much lower total Pb content for acidic soils relative to alkaline soils. Moreover, the effect of ageing also exhibits that a marked decline in bioavailable Pb results in lowering toxicity. Significant amounts of weight loss in earthworms during an acute toxicity test in long-term contaminated soils at a relatively low Pb concentration suggested that other metal or combined metal toxicity may also play a significant role. This study demonstrates that the soil characteristics and ageing period greatly influence the bioavailable fraction of Pb which is related to the bioreceptor.
研究了来自两个铅锌冶炼厂和一个射击场的长期受铅(Pb)污染的土壤,以及新添加的对照土壤,采用化学、生物或生理方法来研究老化对 Pb 生物可利用性的影响。新添加 Pb 的对照土壤进行了蚯蚓毒性测试,以观察蚯蚓的回避和死亡率反应。同时,还检测了老化后土壤中 Pb 的可提取部分,并与基于生理的体外生物可及性提取测试进行了进一步比较。它们在致死浓度 LC(50) 上的差异,即受污染土壤中对蚯蚓种群的致死浓度 LC(50),随土壤 pH 值的变化而有很大差异。老化对毒性的强烈影响也反映在 Pb 的可提取性上,在酸性土壤 AC 中比碱性土壤 BC 中高得多。这表明,对于酸性土壤,相对于碱性土壤,导致蚯蚓毒性的可利用 Pb 部分在更低的总 Pb 含量下就可以达到。此外,老化的影响还表明,可利用 Pb 的显著减少会降低毒性。在长期污染土壤中进行的急性毒性测试中,蚯蚓的大量体重减轻,这表明其他金属或复合金属毒性也可能起重要作用。本研究表明,土壤特性和老化期极大地影响了 Pb 的可利用部分,这与生物受体有关。