Development of a Dispersive µSPE Method for the Determination of Pesticide Residues in Water Samples by LC-MS/MS. [PDF]
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Trapped Ion Mobility Improves Annotation Accuracy in LC-HRMS Screening Applications for Exposomics. [PDF]
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Grab Sampling or Passive Samplers? A Comparative Approach to Water Quality Monitoring. [PDF]
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Highly efficient TiO<sub>2</sub>-functionalized nylon-6 nanofibrous membranes for rapid adsorptive removal of atrazine from water. [PDF]
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Different distribution patterns and potential risks of pesticide residues between soils and sediments: a case study in Lake Taihu Ecological Conservation Area. [PDF]
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Simazine: Degradation by Soil Microorganisms
Science, 1963A soil fungus, Aspergillus fumigatus Fres., is effective in the degradation of the herbicide 2-chloro-4,6-bis(ethylamino)- s -triazine (simazine). The degradation of both ring- and chain-labeled (C 14 ) simazine was observed in an unamended and an amended (sucrose ...
D D, Kaufman, P C, Kearney, T J, Sheets
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Simazine: Degradation by Corn Seedlings
Science, 1962The herbicide 2-chloro-4,6-bis(ethylamino)- s -triazine (simazine) is converted to 2-hydroxy-4,6-bis(ethylamino)- s -triazine (hydroxysimazine) in vivo by corn seedlings and in vitro by corn extracts. Hydroxysimazine is considered to be a detoxified form of the herbicide.
R H, Hamilton, D E, Moreland
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Oxidation of simazine: Biological oxidation of simazine and its chemical oxidation byproducts
Water Environment Research, 1995Batch biodegradation studies were conducted to assess the biodegradability of single s‐triazines. s‐Triazines tested included simazine, a widely used herbicide, and its products resulting from oxidation with ozone, ultraviolet (UV) light, and combined ozone and UV light oxidation. Degradation rates for each s‐triazine were calculated as μM N/hr.
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