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Comparison of bioassays by testing whole soil and their water extract from contaminated sites

机译:通过检测污染场地的全土壤及其水提取物进行生物测定的比较

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摘要

The harmful effects of contaminants on the ecosystems and humans are characterised by their environmental toxicity. The aim of this study was to assess applicability and reliability of several environmental toxicity tests, comparing the result of the whole soils and their water extracts. In the study real contaminated soils were applied from three different inherited contaminated sites of organic and inorganic pollutants. The measured endpoints were the bioluminescence inhibition of Vibrio fischeri (bacterium), the dehydrogenase activity inhibition of Azomonas agilis (bacterium), the reproduction inhibition of Tetrahymena pyriformis (protozoon), and Panagrellus redivivus (nematode), the mortality of Folsomia candida (springtail), the root and shoot elongation inhibition of Sinapis alba (plant: white mustard) and the nitrification activity inhibition of an uncontaminated garden soil used as "test organism". Besides the standardised or widely used methods some new, direct contact ecotoxicity tests have been developed and introduced, which are useful for characterisation of the risk of contaminated soils due to their interactive nature.rnSoil no. 1 derived from a site polluted with transformer oil (PCB-free); Soil no. 2 originated from a site contaminated with mazout; Soil no. 3 was contaminated with toxic metals (Zn, Cd, Cu, Pb, As).rnIn most cases, the interactive ecotoxicity tests indicated more harmful effect of the contaminated soil than the tests using soil extracts. The direct contact environmental toxicity tests are able to meet the requirements of environmental toxicology: reliability, sensibility, reproducibility, rapidity and low cost.
机译:污染物对生态系统和人类的有害影响以其环境毒性为特征。这项研究的目的是评估几种环境毒性试验的适用性和可靠性,比较整个土壤及其水提取物的结果。在这项研究中,从三个不同的遗传继承的有机和无机污染物污染地点应用了真正的污染土壤。所测量的终点是费氏弧菌(细菌)的生物发光抑制,敏捷阿兹莫单胞菌(细菌)的脱氢酶活性抑制,梨形四膜虫(原生动物)和重生Panagrellus redivivus(线虫)的繁殖抑制,念珠菌的死亡率(跳蚤)。 ,对Sinapis alba(植物:白芥菜)的根和芽伸长抑制以及对用作“试验生物”的未污染花园土壤的硝化活性抑制。除了标准化或广泛使用的方法外,还开发并引入了一些新的直接接触生态毒性测试,这些测试由于其相互作用的特性,可用于表征污染土壤的风险。 1个源于受变压器油污染的场所(不含PCB);土号2来自受mazout污染的站点;土号3被有毒金属(Zn,Cd,Cu,Pb,As)污染。在大多数情况下,交互式生态毒性测试表明,与使用土壤提取物进行的测试相比,受污染土壤的危害更大。直接接触环境毒性测试能够满足环境毒理学的要求:可靠性,敏感性,可重复性,快速性和低成本。

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