|本期目录/Table of Contents|

[1]郭亚军,赵明,陈小军,等.三氟苯嘧啶在稻田中的降解动态和残留分析[J].江苏农业科学,2021,49(2):71-75,80.
 Guo Yajun,et al.Degradation dynamics and residues analysis of triflumezopyrim in paddy[J].Jiangsu Agricultural Sciences,2021,49(2):71-75,80.
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三氟苯嘧啶在稻田中的降解动态和残留分析(PDF)
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《江苏农业科学》[ISSN:1002-1302/CN:32-1214/S]

卷:
第49卷
期数:
2021年第2期
页码:
71-75,80
栏目:
植物保护
出版日期:
2021-01-20

文章信息/Info

Title:
Degradation dynamics and residues analysis of triflumezopyrim in paddy
作者:
郭亚军1 赵明2 陈小军2 王晓林3 张军4
1.江苏省扬州市江都区农业技术推广中心,江苏扬州 225200; 2. 扬州大学园艺与植物保护学院,江苏扬州 225009;3.江苏省扬州市江都区大桥镇农业农村局,江苏扬州 225211; 4.扬州市职业大学,江苏扬州 225012
Author(s):
Guo Yajunet al
关键词:
三氟苯嘧啶水稻土壤田水降解残留
Keywords:
-
分类号:
S482.3;TQ450.2+63
DOI:
-
文献标志码:
A
摘要:
采用LC-MS/MS(液相色谱-质谱/质谱)法研究了10%三氟苯嘧啶悬浮剂中三氟苯嘧啶在江苏省扬州市、安徽省宣城市2地水稻田中的残留降解动态和最终残留量。研究结果表明,三氟苯嘧啶在稻田水稻植株、土壤和田水中降解动态符合一级动力学方程,在水稻植株、土壤和田水中的降解半衰期分别为9.40~11.26、5.53~5.89、799~8.25 d。10%三氟苯嘧啶悬浮剂分别以225、337.5 mL/hm2这2个剂量施用后,在土壤中最终残留浓度分别为0010~0.014、0.028~0.037 mg/kg,在稻米中最终残留浓度分别为0.003~0.006、0.008~0.009 mg/kg。三氟苯嘧啶在大米中的残留浓度低于农药残留联席会议规定的大米中三氟苯嘧啶的残留限量标准,在此剂量下使用三氟苯嘧啶对水稻及环境是安全的。
Abstract:
-

参考文献/References:

[1]吴利红.娄伟平,姚益平,等. 水稻农业气象指数保险产品设计——以浙江省为例[J]. 中国农业科学,2010,43(23):4942-4950.
[2]刘万才,刘振东,黄冲等. 近10年农作物主要病虫害发生危害情况的统计和分析[J]. 植物保护,2016,42(5):1-9.
[3]Hu G,Lu M H,Tuan H A,et al. Population dynamics of rice planthoppers,Nilaparvata lugens and Sogatella furcifera (Hemiptera,Delphaacidae) in Central Vietnam and its effects on their spring migration to China[J]. Bulletin of Entomological Research,2017,107(3):369-381.
[4]张帅. 2014年全国农业有害生物抗药性监测结果及科学用药建议[J]. 中国植保导刊,2015,35(3):65-69.
[5]Liao X,Mao K K,Ali E,et al. Temporal variability and resistance correlation of sulfoxaflor susceptibility among Chinese populations of the brown planthopper Nilaparvata lugens (Stl)[J]. Crop Protection,2017,102:141-146.
[6]廖逊,万虎,李建洪. 褐飞虱对杀虫剂抗性研究进展[J]. 农药学学报,2019,21(Z1):718-728.
[7]Tanner G,Czerwenka C. LC-MS/MS analysis of neonicotinoid insecticides in honey:methodology and residue findings in Austrian honeys[J]. Journal of Agricultural and Food Chemistry,2011,59(23):12271-12277.
[8]Wang P,Yang X,Wang J,et al. Multi-residue method for determination of seven neonicotinoid insecticides in grains using dispersive solid-phase extraction and dispersive liquid-liquid micro-extraction by high performance liquid chromatography[J]. Food Chemistry,2012,134(3):1691-1698.
[9]Whitehorn P R,OConnor S,Wackers F L,et al. Neonicotinoid pesticide reduces bumble bee colony growth and queen production[J]. Science,2012,336(6079):351-352.
[10]Guez D. A common pesticide decreases foraging success and survival in honey bees:questioning the ecological relevance [J]. Frontiers in physiology,2013,4:37.
[11]Zhang W M,Holyoke C,Pahutski T,et al. Triflumezopyrim (DuPont Pyraxalt (R)):Discovery and optimization of mesoionic pyrido[1,2a]pyrimidinones as a novel class of insecticides[J]. Abstracts of Papers of the American Chemical Society,2017,254:389.
[12]Zhang W M. Mesoionic pyrido[1,2-a]pyrimidinone insecticides:from discovery to triflumezopyrim and dicloromezotiaz[J]. Accounts of Chemical Research,2017,50(9):2381-2388
[13]刘刚. 国内企业首次登记三氟苯嘧啶产品[J]. 农药市场信息,2018(26):38.
[14]杨光. 杜邦三氟苯嘧啶将获我国首登[J]. 农药市场信息,2016(21):37.
[15]孙华明,陈定军,吴波,等. 三氟苯嘧啶悬浮剂对稻飞虱田间防效试验[J]. 作物研究,2017(增刊1):741-743.
[16]Zhu J,Li Y,Jiang H,et al. Selective toxicity of the mesoionic insecticide,triflumezopyrim,to rice planthoppers and beneficial arthropods[J]. Ecotoxicology,2018,27(4):411-419.
[17]张国,于居龙,庄义庆,等. 三氟苯嘧啶对稻飞虱的控制效果与应用技术研究[J]. 农学学报,2019,9(4):32-38.
[18]Cordova D,Benner E A,Schroeder M E,et al. Modes of action of triflumezopyrim:a novel mesoionic insecticide which inhibits the nicotinic acetylcholine receptor[J]. Insect Biochemistry and Molecular Biology,2016,74:32-41.
[19]Holyoke C W Jr,Zhang W M, Pahutski T F Jr, et al. Triflumezopyrim:discovery and optimization of a mesoionic insecticide for rice[J]. Abstracts of Papers of the American Chemical Society,2014,248:446.
[20]中华人民共和国农业农村部. 农作物中农药残留试验准则:NY/T 788—2018[S]. 2018.
[21]Fan T L,Chen X J,Xu Z Y,et al. Uptake and translocation of triflumezopyrim in rice plants[J]. Journal of Agricultural and Food Chemistry,2020,68(27):7086-7092.
[22]Triflumezopyrim (303)[EB/OL]. [2020-10-09]. http://www.fao.org/fileadmin/templates/agphome/documents/Pests_Pesticides/JMPR/Evaluation2017/TRIFLUMEZOPYRIM__303.pdf.
[23]European Food Safety Authority. Scientific Support for Preparing an EU Position in the 50th Session of the Codex Committee on Pesticide Residues[EB/OL]. (2018-05-17) [2018-10-25]. https://efsa.onlinelibrary.wiley.com/doi/pdf/10.2903/j.efsa.2018.5306.
[24]谭海军. 新型介离子嘧啶酮类杀虫剂三氟苯嘧啶及其开发[J]. 现代农药,2019,18(5):42-46.

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备注/Memo

备注/Memo:
收稿日期:2020-10-24
基金项目:江苏省重点研发计划(编号:BE2019340、BE2018362);江苏省扬州市科技计划(编号:YZ2019139)。
作者简介:郭亚军(1975—),男,江苏扬州人,硕士,高级农艺师,主要从事植保、栽培、农药学及农产品安全监测研究。E-mail:381896070@qq.com。
通信作者:陈小军,博士,副教授,主要从事植物保护学和农药残留分析研究,E-mail:cxj@yzu.edu.cn;张军,博士,教授,从事作物高效栽培生态生理及优质清洁生产研究。
更新日期/Last Update: 2021-01-20