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首页> 外文期刊>Chemosphere >Estimation of the hazard of landfills through toxicity testing of leachates Ⅰ. Determination of leachate toxicity with a battery of acute tests
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Estimation of the hazard of landfills through toxicity testing of leachates Ⅰ. Determination of leachate toxicity with a battery of acute tests

机译:通过渗滤液毒性试验估算垃圾填埋场的危害Ⅰ。一系列急性试验测定渗滤液毒性

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Twenty-seven landfill leachates were tested on a battery of conventional toxicity tests (microalgae, daphnids, duckweeds) and new microbiotests (rotifers, crustaceans, protozoans, luminescent bacteria). The toxicity varied substantially from one test species to the other, from one site to the other, as well as from one type of landfill to the other. Leachates of domestic wastes were significantly more toxic than those of pure industrial wastes; the most toxic leachates were found for landfills receiving hazardous industrial wastes mixed with domestic wastes. The highest sensitivity was found for the protozoan assay, followed by the crustacean microbiotests. All other types of bioassays appeared to be substantially less sensitive to the toxicants present in the landfill leachates. The results of a Principal Component Analysis suggest that in approximately 90% of the cases the toxicity of landfill leachates can be assessed by applying a test battery composed of a bacterial assay, a protozoan test and an assay with micro-algae, jointly with one of the following bioassays: higher plants, rotifers or crustaceans. The application of a factor 100 to to the highest toxicity figure for each landfill leachate to extrapolate a Predicted No-Effect Concentration (PNEC) revealed that in quite a number of cases, the leachates need to be diluted by more than 10.000 times to make them innocuous for environmental biota.
机译:在一系列常规毒性测试(微藻,水蚤,浮萍)和新的微生物测试(轮虫,甲壳类,原生动物,发光细菌)上测试了27个垃圾填埋场渗滤液。从一种测试物种到另一种测试物种,从一个场所到另一个场所,以及从一种类型的垃圾填埋场到另一种类型,其毒性差异很大。生活垃圾的渗滤液比纯工业垃圾的渗滤液毒性更大。对于接收危险工业废料和生活垃圾的垃圾填埋场,发现毒性最高的浸出液。对于原生动物分析,发现最高的灵敏度,然后进行甲壳类微生物测试。所有其他类型的生物测定似乎都对垃圾填埋场渗滤液中的有毒物质不那么敏感。主成分分析的结果表明,在大约90%的情况下,可以通过应用由细菌检测,原生动物检测和微藻检测组成的测试电池,结合以下方法之一来评估垃圾渗滤液的毒性:以下生物测定法:高等植物,轮虫或甲壳类动物。对每个垃圾填埋场渗滤液的最高毒性系数应用100的因子以推断预测的无效应浓度(PNEC)表明,在很多情况下,渗滤液需要稀释超过10.000倍才能制成对环境生物无害。

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