首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >Ecotoxicity of Pentachlorophenol in Contaminated Soil as Affected by Soil Type
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Ecotoxicity of Pentachlorophenol in Contaminated Soil as Affected by Soil Type

机译:土壤类型对五氯苯酚在污染土壤中的生态毒性影响

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Four uncontaminated soils were chosen with a wide range of pH, organic carbon, and clay content to allow us to determine the properties that were most influential on pentachlorophenol (PCP) toxicity. The soils were contaminated in the laboratory at concentrations of 50 and 100 mg/kg and target organisms were exposed to the contaminated soil. Germination and emergence of lettuce seedlings was found to be dependent upon PCP concentration and soil type, and responses were highly correlated to extractable concentrations. Earthworms were sensitive to PCP, regardless of soil properties, and mortality was observed in most samples at the 100 mg/kg concentration. Toxic responses by the worms were not strongly related to soil properties or extractable concentrations. The importance of soil chemical and physical properties on toxicity and bioavailability depends upon the target organism. In the case of lettuce seedlings, PCP is acquired through the aqueous phase; therefore, the chemical interaction between PCP and soil controls toxicity. Since earthworms ingest soil and potentially can change the chemical environment of exposure, the impact of soil properties on PCP toxicity is less apparent.
机译:选择了四种具有广泛pH值,有机碳和粘土含量的未污染土壤,以使我们能够确定对五氯苯酚(PCP)毒性影响最大的特性。在实验室中,土壤被污染的浓度为50和100 mg / kg,目标生物暴露于污染的土壤。发现莴苣幼苗的发芽和出苗取决于五氯苯酚浓度和土壤类型,其反应与可提取浓度高度相关。 soil对PCP敏感,无论其土壤特性如何,大多数浓度为100 mg / kg的样品均观察到死亡率。蠕虫的毒性反应与土壤特性或可提取浓度没有很大关系。土壤化学和物理性质对毒性和生物利用度的重要性取决于目标生物。对于生菜幼苗,五氯苯酚是通过水相获得的。因此,五氯苯酚与土壤之间的化学相互作用控制了毒性。由于earth会摄入土壤并可能改变暴露的化学环境,因此土壤性质对五氯苯酚毒性的影响不太明显。

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