![]() Atrazine structure
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Common Name | Atrazine | ||
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CAS Number | 1912-24-9 | Molecular Weight | 215.683 | |
Density | 1.3±0.1 g/cm3 | Boiling Point | 279.7±23.0 °C at 760 mmHg | |
Molecular Formula | C8H14ClN5 | Melting Point | 175°C | |
MSDS | Chinese USA | Flash Point | 122.9±22.6 °C | |
Symbol |
![]() ![]() ![]() GHS07, GHS08, GHS09 |
Signal Word | Warning |
Environmental friendly method for urban wastewater monitoring of micropollutants defined in the Directive 2013/39/EU and Decision 2015/495/EU.
J. Chromatogr. A. 1418 , 140-9, (2015) The fate and removal of organic micropollutants in the environment is a demanding issue evidenced by the recent European policy. This work presents an analytical method for the trace quantification of 37 micropollutants including Priority Substances (Directiv... |
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Simultaneous extraction and determination of various pesticides in environmental waters.
J. Sep. Sci. 37(24) , 3699-705, (2014) A simple and rapid method was developed for the simultaneous analysis of nine different pesticides in water samples by gas chromatography with mass spectrometry. A number of parameters that may affect the recovery of pesticides, such as the type of solid-phas... |
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Atrazine and its degradates have little effect on the corticosteroid stress response in the zebrafish.
Comp. Biochem. Physiol. C. Toxicol. Pharmacol. 170 , 1-7, (2015) The present study examined the effects of atrazine on basal and forced swimming induced changes in whole body cortisol content in adult zebrafish. Zebrafish were exposed to graded concentrations of atrazine or the atrazine degradates deisopropylatrazine (DIA)... |
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ROI-SCAVENGING ENZYME ACTIVITIES AS TOXICITY BIOMARKERS IN THREE SPECIES OF MARINE MICROALGAE EXPOSED TO MODEL CONTAMINANTS (COPPER, IRGAROL AND ATRAZINE)
Ecotoxicol. Environ. Saf. 104 , 294-301, (2014) There is a need to develop efficient tools to prevent damage to marine ecosystems due to pollution. Since microalgae play a key role in marine ecosystems, they are considered potentially useful for quick and sensitive toxicity bioassays. In this study an inte... |
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Extending an in vitro panel for estrogenicity testing: the added value of bioassays for measuring antiandrogenic activities and effects on steroidogenesis.
Toxicol. Sci. 141(1) , 78-89, (2014) In the present study, a previously established integrated testing strategy (ITS) for in vitro estrogenicity testing was extended with additional in vitro assays in order to broaden its sensitivity to different modes of action resulting in apparent estrogenici... |
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Comparison of peak-picking workflows for untargeted liquid chromatography/high-resolution mass spectrometry metabolomics data analysis.
Rapid Commun. Mass Spectrom. 29(1) , 119-27, (2014) Data analysis is a key step in mass spectrometry based untargeted metabolomics, starting with the generation of generic peak lists from raw liquid chromatography/mass spectrometry (LC/MS) data. Due to the use of various algorithms by different workflows, the ... |
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Determination of manganese- and manganese-containing fungicides with lucigenin-Tween-20-enhanced chemiluminescence detection.
Luminescence 30 , 950-61, (2015) A flow-injection (FI) method is reported for the determination of Mn(II), maneb and mancozeb fungicides based on the catalytic effect of Mn(II) on the oxidation of lucigenin and dissolved oxygen in a basic solution. The Tween-20 surfactant has been reported f... |
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Stir fabric phase sorptive extraction for the determination of triazine herbicides in environmental waters by liquid chromatography.
J. Chromatogr. A. 1376 , 35-45, (2015) Stir fabric phase sorptive extraction (SFPSE), which integrates sol-gel hybrid organic-inorganic coated fabric phase sorptive extraction media with a magnetic stirring mechanism, is presented for the first time. Two flexible fabric substrates, cellulose and p... |
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Selective mixed-bed solid phase extraction of atrazine herbicide from environmental water samples using molecularly imprinted polymer.
Talanta 129 , 132-8, (2014) A novel approach for the selective extraction of organic target compounds from water samples has been developed using a mixed-bed solid phase extraction (mixed-bed SPE) technique. The molecularly imprinted polymer (MIP) particles are embedded in a network of ... |
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Determining in situ periphyton community responses to nutrient and atrazine gradients via pigment analysis.
Sci. Total Environ. 515-516 , 70-82, (2015) Agrochemicals, including fertilizers and herbicides, are significant contributors of non-point source pollution to surface waters and have the potential to negatively affect periphyton. We characterized periphyton communities using pigment markers to assess t... |