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Toxicity assessment of organic contaminants: evaluation of mixture effects in model industrial mixtures using 2n full factorial design

机译:有机污染物的毒性评估:使用2n全因子设计评估模型工业混合物中混合物的影响

摘要

Toxic organic chemicals present in industrial effluents were screened to design mixtures for examining the significant main and interaction effects among mixture components. A set of five four-component mixtures was selected by examining effluents from organic chemical, textile-dye, pulp-paper and petroleum refinery industries. The screening was based on their discharge, solubility, toxicity and volatility. A 2n full factorial approach was used in designing the mixtures, containing components at two dose levels, EC10(−) and EC40(+). Each mixture resulted in 16 combinations. Mixture toxicity was measured using the Vibrio fischeri bioluminescence inhibition assay. The main effects and binary, ternary and quaternary interaction effects were determined and the significance of effects was evaluated using normal order score and multifactor ANOVA. The organic chemicals retained after screening included, acetaldehyde, aniline, n-butanol, p-cresol, catechol, ethylbenzene, naphthalene, phenol, 1,2,4 trimethylbenzene and o-xylene. In all mixtures, the magnitude of main effects was more significant than the interaction effects. The trend in the main effect of components in any mixture was affected by the trends in the physico-chemical properties of the components, i.e., partition coefficient, molecular size and polarity. In some mixtures, a component with significantly higher concentration and significantly lower toxicity was found to depict a relatively high main effect, as observed for acetaldehyde in mixture I and n-butanol in mixture III. Normal order score approach failed to identify the significant interaction effects that could be identified using multifactor ANOVA. In general, the binary interactions were more significant than the ternary and quaternary interactions.
机译:对工业废水中存在的有毒有机化学物质进行了筛选,以设计混合物,以检查混合物组分之间的主要主要作用和相互作用。通过检查来自有机化工,纺织染料,纸浆造纸和炼油厂的废水,选择了一组五种四组分混合物。筛选基于它们的排放,溶解度,毒性和挥发性。在设计混合物时使用2n全因子方法,其中包含两个剂量水平的成分EC10(-)和EC40(+)。每种混合物产生16种组合。使用费氏弧菌生物发光抑制测定法测量混合物毒性。确定主要效应以及二元,三元和四元相互作用效应,并使用正态得分和多因素方差分析评估效应的重要性。筛选后保留的有机化学品包括乙醛,苯胺,正丁醇,对甲酚,邻苯二酚,乙苯,萘,苯酚,1,2,4三甲苯和邻二甲苯。在所有混合物中,主要作用的强度均大于相互作用的作用。组分在任何混合物中的主要作用的趋势受组分的理化性质趋势的影响,即分配系数,分子大小和极性。在某些混合物中,如混合物I中的乙醛和混合物III中的正丁醇所观察到的,发现具有明显较高浓度和显着较低毒性的组分表现出较高的主要作用。正常订单评分方法无法识别可以使用多因素ANOVA识别的重大交互作用。通常,二元相互作用比三元和四元相互作用更重要。

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