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Methyl parathion toxicity in rats is changed by pretreatment with the pesticides chlordecone, mirex and linuron.
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Determination of linuron residue in soil.
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Adsorption and desorption of linuron by activated charcoals.
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Teratogenicity studies on linuron, malathion, and methoxychlor in rats.
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Simplified heptafluorobutyrylation of linuron and its metabolite 3,4-dichloroaniline.
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Sampling and determination of fenitrothion, dimethoate, mevinphos, linuron, metoxuron and trifluralin from air.
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Metabolites of diuron, linuron, and methazole formed by liver microsomal enzymes and spinach plants.
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Tetrachloroazobenzene in 3,4-dichloroaniline and its herbicidal derivatives: propanil, diuron, linuron, and neburon.
The presence of 3,3', 4,4'-tetrachloroazobenzene (TCAB) was determined by high performance liquid chromatography in 3, 4-dichloroaniline and herbicides made therefrom. The concentrations of TCAB in 3, 4-dichloroanilines and in different herbicides from a variety of manufacturers ranged from 9 to 1400 micrograms/g (ppm). The chloracnegenic potential of these products, as determined by rabbit ear test, suggests that it is in the same range of 2, 3, 7, 8-tetrachlorodibenzodioxin, a known potent chloracnegenic agent.
Simultaneous detection of the residues of atrazine and linuron in water, soil, plant, and animal samples by thin-layer chromatography.
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[Experimental research on the harmless levels of the herbicide linuron and dichlorophenyloxyurea in the water of reservoirs].
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Effect of some ecological factors of degradation of propanil, linuron, and their transformation product 3,4-dichloroaniline in soil.
The degradation of xenobiotics was investigated in model experiments in soddy-podzolic soil as a function of their concentration, pH moisture content, temperature, and aeration of the soil, and presence of organic and mineral compounds. The main and secondary factors determining the persistence of xenobiotics in soil were established and approximation formulas for calculating their persistance criteria (ty) were proposed.
[Working conditions in the use of linuron in agriculture].
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[Effect of linuron and chlortoluron in short-term chronic experiment on young rats on the hexobarbital metabolism and activity of some liver enzymes].
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The effect of linuron and chlorpropham on glutamic acid production by Arthrobacter globiformis.
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[Induction effect of diuron and linuron in short-term chronic experiments in adult rats].
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Rapid screening method, including automated colorimetry, for low residue levels of linuron and-or chlorpropham in vegetables.
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[Inductive action of linuron and chlortoluron in short-term chronic experiments on young rats].
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