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Study on the Competitive Adsorption of Dimethoate with Multiple Pesticides and Heavy Metals Based on Fractional Factorial Design

机译:基于分数阶层设计的多种杀虫剂和重金属竞争吸附的研究

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In order to reveal the composite contaminations characteristic of dimethoate adsorption onto the surficial sediments, the competitive adsorption of dimethoate in pesticide (dimethoate, metalaxyl, atrazine, malathion, and prometryn)/heavy metals (copper, zinc, lead, cadmium and nickel) system is investigated. A 2~(10-5) fractional factorial design method at resolution IV and a multiple linear regression adsorption model are used to identify the main effects and interactions of above ten pollutions. The adsorption amount of dimethoate surficial sediments is set as the dependent variable, and the main effects and second-order interactions of ten pollutions are set as independent variables. Thus, a multiple linear regression model of dimethoate adsorption is screened and established. The results of model show that the main effects of Cd, malathion and prometryn performed a significant antagonistic effect (α=0.05) on the adsorption of dimethoate onto the sediment (competitive adsorption effects), and the order is: prometryn (-0.0925) > Cd (-0.0878) > malathion (-0.0827); while heavy metal Zn performed a significant synergy effect on the adsorption of dimethoate. The second-order interaction effects of Zn*prometryne, Pb*atrazine and Pb*atrazine has a significant antagonistic impact on the adsorption of dimethoate in sediments, which is in a sequence of Zn*prometryne (-0.0967) > Pb*atrazine (-0.0945) > Cd*atrazine (-0.0922). Moreover, according to the rate of contributions of main effects and second-order interaction effects in composite contaminations system, we can also estimate and definite the pollution levels of target pollutant.
机译:为了揭示将Dimethoate吸附的复合污染物污染在表面沉积物上,二甲酯在农药中的竞争性吸附(二甲酯,金属酰基,亚基,马他素和Prometryn)/重金属(铜,锌,铅,镉和镍)体系被调查了。分辨率IV和多元线性回归吸附模型的2〜(10-5)分数阶段设计方法用于识别10次污染的主要效果和相互作用。将二甲酯表面沉积物的吸附量被设定为依赖变量,并且十个污染的主要效果和二阶相互作用被设定为独立变量。因此,筛选和建立了二甲酯吸附的多元线性回归模型。模型的结果表明,CD,Malathion和Prometryn的主要效果在将Dimethoate的吸附(竞争性吸附效应)上进行了显着的拮抗作用(α= 0.05),命令是:Prometryn(-0.0925)> CD(-0.0878)> malathion(-0.0827);虽然重金属Zn对二甲酯的吸附进行了显着的协同作用。 Zn * prometryne,pb * atrazine和pb * atrazine对沉积物中二甲酯的吸附具有显着的拮抗作用,这是Zn * prometryne(-0.0967)> pb * atrazine( - - 0.0945)> Cd * atrazine(-0.0922)。此外,根据复合污染系统的主要效应和二阶相互作用效果的贡献率,我们还可以估计和确定目标污染物的污染水平。

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