期刊文献+

反相高效液相色谱法测定水中的甲基磺草酮农药 被引量:3

Determination of Mesotrione in Water by Reversed Phase High Performance Liquid Chromatography
原文传递
导出
摘要 建立了二氯甲烷萃取浓缩,反相高效液相色谱测定水样中甲基磺草酮农药含量的分析方法。调节水样pH值为4.0后,以二氯甲烷为萃取剂,25℃下重复萃取两次,萃取时间为15min,旋转蒸发仪浓缩近干,乙腈定容。以SPHERI-5RP-18(5Lm)为色谱柱,乙腈-磷酸缓冲溶液(pH值4.0)为流动相,紫外检测波长为220nm。结果表明,在选定的萃取和色谱条件下,甲基磺草酮测定的线性范围为0.5—100.0mg/L,线性相关系数r为0.9996,标准偏差(SD)为0.46,变异系数(CV)为0.47%,平均加标回收率88.9%,检出限为0.03mg/L。此方法可用于实际水样中甲基磺草酮农药含量的测定。 Mesotrioe in water samples was extracted by methylene chloride and determined by reversed-phase high-performance liquid chromatography(RP-HPLC). After the pH value of the water samples was adjusted to 4 by phosphoric acid or sodium hydoxide solution and then extracted twice by methylene dichloride under 25℃ for 15 min. The extract liquor was evaporated by rotary evaporator nearly dry and dissolved in acetonitrile in constant volume finally. HPLC was used to determine mesotrione with a SPHERI-5 RP-18 column,UV detector at 220nm,and acetonitrile-phosphoric acid aqueous solution(pH= 4.0) as the mobile phase. Results showed that linear range of meotrione was 0.5--100.0 mg/L,and the correlation coefficient r was 0. 9996,the standard deviation (SD) was 0.46,the variation coefficient (CV) was 0. 472% ,the average recovery rate was 88.9 % under the optimum condition.
出处 《光谱实验室》 CAS 2013年第5期2492-2495,共4页 Chinese Journal of Spectroscopy Laboratory
基金 江苏省第八批"六大人才高峰(农业领域)"项目资助
关键词 甲基磺草酮 高效液相色谱 萃取 Mesotrione HPLC Extraction
  • 相关文献

参考文献7

二级参考文献34

  • 1高爽,张宗俭,安伟良,林长福,杨玉廷,马宏娟,李鸣.玉米田除草剂甲基磺草酮的生物活性及安全性[J].农药,2004,43(10):469-471. 被引量:20
  • 2聂开晟,范志金,刘长令.三酮类除草剂的研究新进展[J].农药,2006,45(1):4-7. 被引量:15
  • 3徐妍,杜微.25%磺草酮·2甲4氯水剂高效液相色谱分析[J].农药,2006,45(5):329-330. 被引量:5
  • 4Baer U, Calvet R. Fate of soil applied herbicides: experimental data and prediction of dissipation kinetics[J]. J. Environ. Qual., 1999(28): 1765-1777.
  • 5Rouehaud J, Thirion D, Callens D. et al. Soil dissipation of the pest-emergence herbicide sulcotrione in maize crops treated with organic fertilizers[J]. Bull Environ. Contain. Toxicol, 1996(57): 398-405.
  • 6BEAUDEGNIES R, EDMUNDS A J F, FRASER T E M, et al. Herbicidal 4-Hydroxyphenyl-pyruvate Dioxygenase Inhibitors-A Review of the Triketone Chemistry Story from a Syngenta Perspective[J]. Bioorganic & Medicinal Chemistry, 2009, 17(12): 4134-4152.
  • 7TOMLIN C D S. The Pesticide Manual[M]. Thirteenth Edition. UK Hampshire: BCPC, 2003:631.
  • 8FELIX J, DOOHANA D J, BRUINS D. Differential Vegetable Crop Responses to Mesotrione Soil Residues a Year after Application[J]. Crop Protection, 2007, 26(9): 1395-1403.
  • 9ALFEMESS P, WIEBE L. Determination of Mesotrione Residues and Metabolites in Crops, Soil, and Water by Liquid Chromatography with Fluorescence Detection[J]. Agricultural and Food Chemistry, 2002, 50(14): 3926-3934.
  • 10FREITAS L G, GOTZ CH W, RUFF M, et al. Quantification of the New Triketone Herbicides, Sulcotrione and Mesotrione and other Important Herbicides and Metabolites, at the ng/L Level in Surface Waters Using Liquid Chromatography-Tandem Mass Spectrometry[J]. Chromatogaphy A, 2004, 1028(2): 277-286.

共引文献39

同被引文献44

  • 1何利文,石利利,孔德洋,单正军,宗良纲.呋喃丹和阿特拉津在土柱中的淋溶及其影响因素[J].生态与农村环境学报,2006,22(2):71-74. 被引量:25
  • 2Papadopeulou - Mourkidon E, Karpouzas D G, Patsias J, et al. The potential of pesticides to contaminate the groundwater resources of the Axios river basin in Macedonia, Northern Greece. Part I. Monitoring study in the North part of the basin[ J]. Science of the Total Environ- ment,2004,321 (1/2/3) :127 - 146.
  • 3Meijer S N,Sheeib M,Jantunen L M,et al. Air -soil exchange of or- ganochlorine pesticides in agricultural soils. 1. Field measurements usinga novel in situ sampling device [ J ]. Environmental Science & Technology,2003,37 (7) : 1292 - 1299.
  • 4Yang O,Qi S H,Zhang J Q,et al. Organoch/orine pesticides in soil, water and sediment along the Jinjiang River mainstream to Quanzhou Bay,southeast China [ J ]. Ecotoxicology and Environmental Safety, 2013,89:59 -65.
  • 5Arias - Estfvez M, L6pez - Periago E, Martlnez - Carballo E, et al. The mobility and degradation of pesticides in soils and the pollution of groundwater resources [ J ]. Agriculture Ecosystems & Environment, 2008,123(4) :247 -260.
  • 6Dyson J S, Beulke S, Brown C D, et al. Adsorption and degradation of the weak acid mesotrione in soil and environmental fate implications [J]. Journal of Environmental Quality,2002,31 (2) :613 -618.
  • 7Durand S, Saneelme M, Besse- Hoggan P, et al. Biodegradation pathway of mesotrione: complementarities of NMR, LC - NMR and LC- MS for qualitative and quantitative metabolic profiling [ J ]. Chemosphere,2010,81 ( 3 ) :372 - 380.
  • 8Pileggi M, Pileggi S A, Olchanheski L R, et al. Isolation of mesotrione - degrading bacteria from aquatic environments in Brazil [ J ]. Chemosphere ,2012,86 ( 11 ) : 1127 - 1132.
  • 9国家环境保护总局.化学农药环境安全评价试验准则[s].北京:国家环境保护总局,2003.
  • 10Akyol N H,Yolcubal I,Yllksel D I. Sorption and transport of trichlo- roethylene in caliche soil[ J]. Chemosphere,2011,82(6) :809 -816.

引证文献3

二级引证文献5

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部