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- A method for the simultaneous extraction of seven pesticides from soil and sediment. Rebecca Harrison, Ian Bull, Katerina Michaelides
, Anal. Methods
, 2013
, 5
, 2053
- Synthesis of fructose bound Fe(iii) integrated carbon dots as a robust turn-off detection sensor for chlortoluron. Rani, Faiz Ali, Mian Muhammad, Behisht Ara, Aftab Ali Shah
, RSC Adv.
, 2023
, 13
, 17028
- Extraction of phenylurea herbicides from rice and environmental water utilizing MIL-100(Fe)-functionalized magnetic adsorbents. Hongyuan Zhang, Wang Jieying, Liang Zhengji, Rong Fan, Qian Chen, Xueru Shan, Chunzhu Jiang, Guoying Sun
, New J. Chem.
, 2020
, 44
, 1548
- The role of indirect photochemical degradation in the environmental fate of pesticides: a review. Christina K. Remucal
, Environ. Sci.: Processes Impacts
, 2014
, 16
, 628
- Electrochemistry-coupled to liquid chromatography-mass spectrometry-density functional theory as a new tool to mimic the environmental degradation of selected phenylurea herbicides. Ranil Clément Tonleu Temgoua, Ugo Bussy, Dimitri Alvarez-Dorta, Nicolas Galland, Evangeline Njanja, Julie Hémez, Christine Thobie-Gautier, Ignas Kenfack Tonlé, Mohammed Boujtita
, Environ. Sci.: Processes Impacts
, 2021
, 23
, 1600
- Mesoporous carbon reinforced hollow fiber liquid-phase microextraction for the enrichment of phenylurea herbicides followed by their determination with high performance liquid chromatography. Qiuhua Wu, Ying Zhao, Chun Wang, Meng Sun, Xiaoxing Ma, Zhi Wang
, Anal. Methods
, 2015
, 7
, 901
- Competitive enzyme-linked immunosorbent assay for the determination of the phenylurea herbicide chlortoluron in water and biological fluids. M. Fawaz Katmeh, G. Wynne Aherne, Derek Stevenson
, Analyst
, 1996
, 121
, 1699
- Development and evaluation of a chemiluminescent immunoassay for chlortoluron using a camera luminometer. M. Fawaz Katmeh, G. Wynne Aherne, Derek Stevenson
, Analyst
, 1996
, 121
, 329
- Degradation of chlortoluron in water disinfection
processes: a kinetic study. Ilario Losito, Carlo G. Zambonin, Francesco Palmisano
, J. Environ. Monit.
, 2000
, 2
, 582
- Quantitative structure–activity relationships for primary aerobic biodegradation of organic chemicals in pristine surface waters: starting points for predicting biodegradation under acclimatization. Tom M. Nolte, Kevin Pinto-Gil, A. Jan Hendriks, Ad M. J. Ragas, Manuel Pastor
, Environ. Sci.: Processes Impacts
, 2018
, 20
, 157