数字农科院2.0

Residue Reduction And Risk Evaluation Of Chlorfenapyr Residue In Tea Planting, Tea Processing, And Tea Brewing

文献类型: 外文期刊

作者: Yang, J; Luo, FJ; Zhou, L; Sun, HZ; Yu, HA; Wang, XR; Zhang, XZ; Yang, M; Lou, ZY; Chen, ZM

作者机构:

关键词: Chlorfenapyr; Dissipation; Residue; Pesticides; Tea Brewing

期刊名称: SCIENCE OF THE TOTAL ENVIRONMENT

ISSN: 0048-9697

年卷期: 2020 年 738 卷

页码:

收录情况: JCR(2021版) ; EI(2021版)

摘要: The chlorfenapyr residues in the entire tea chain, i.e., in tea planting, tea processing, and tea brewing, were systematically investigated. The degradation rate constants of chlorfenapyr in the tea plants ranged from 0.2460 to 0.2870 with the half-life of 2.4-3.0 days, and 87.5-89.9% of the chlorfenapyr in tea shoots dissipated in the interval of 7 days. In the processing process of both black tea and green tea, the chlorfenapyr residue decreased by 59.1-67.6% compared with the residue in tea shoots due to high vapor pressure (1.2 x 10(-2) mPa 25 degrees C), and drying was the key step that dissipated the chlorfenapyr. A low leaching efficiency of 2.2-3.4% from tea leaves to tea infusion, resulted in low water solubility (0.14 mg L-1 25 degrees C), indicated that >90% of the residual chlorfenapyr was eliminated before the intake of tea infusion. On the basis of these results, an extremely large proportion of the chlorfenapyr deposited on tea shoots was degraded during tea planting, tea processing, and tea brewing, and the health risk was reduced primarily in the first and the last step rather than during tea processing. The remaining 0.2% chlorfenapyr sprayed on the tea shoots represents a negligible health risk based on the RQ assessment. The pesticides with high vapor pressure and low water solubility were more recommended in tea garden for pest control. (C) 2020 Elsevier B.V. All rights reserved.

分类号:

  • 相关文献

[1]Dissipation Dynamics And Residue Of F.our Herbicides In Paddy F ields Using Hplc-Ms/Ms And Gc-Ms. Xu, Zhifeng,He, Yuhan,He, Xiulong,Zhang, Ping,Yu, Qian,Yu, Qian,Zhang, Hongjun,He, Xiulong,He, Lin,Hu, Yuan,Zhang, Ping,Xu, Zhifeng,He, Yuhan,He, Lin,Hu, Yuan. 2019

[2]Dissipation Behavior And Risk Assessment O.f Butralin In Soybean A nd Soil Under Field Conditions. Li, Li,He, Yujian,Liu, Rong,Li, Congdi,Li, Wei,Li, Congdi,Yuan, Longfei. 2017

[3]Different Residue Behaviors Of Four P.esticides In Mushroom Using T wo Different Application Methods. Du, Pengqiang,Du, Pengqiang,Zheng, Yongquan,Xu, Jun,Li, Yuanbo,Dong, Fengshou,Shi, Yingchun,Wu, Xiaohu,Liu, Xingang. 2018

[4]Residue Analysis And Risk Assessment O.f Pyrethrins In Open F ield And Greenhouse Turnips. Feng, XX, Pan, LX, Wang, C, Zhang, HY. 2018

[5]Dissipation and dietary risk assessment of tristyrylphenol ethoxylate homologues in cucumber after field application. Chunmei Li,Jie Zhou,Ning Yue,Yanli Wang,Jing Wang,Fen Jin. 2021

[6]Dissipation, residue, dietary, and ecological risk assessment of atrazine in apples, grapes, tea, and their soil. Longfei Yuan,Yida Chai,Congdi Li,Rong Liu,Zenglong Chen,Li Li,Wei Li,Yujian He. 2021

[7]Human Health Safety Studies Of A. New Insecticide: Dissipation K inetics And Dietary Risk Assessment Of Afidopyropen And One Of Its Metabolites In Cucumber And Nectarine. Wu, Xiaohu,Ji, Mingshan,Dong, Fengshou,Zheng, Yunxi,Liu, Xingang,Xie, Jun,Xu, Jun,Zheng, Yongquan,Xie, Jun. 2019

[8]5种药剂对大型潘的急性活动抑制毒性研究. 冯磊,蒋红云,李传仁,张燕宁,何伟志,张兰. 2012

[9]Dissipation behavior and risk assessment of tolfenpyrad from tea bushes to consuming. Wang X., Zhang X., Wang Z., Zhou L., Luo F., Chen Z.. 2022

[10]Residue Pattern Of Polycyclic Aromatic H.ydrocarbons During Green Tea M anufacturing And Their Transfer Rates During Tea Brewing. Gao, GW, Chen, HP, Liu, PX, Hao, ZX, Ma, GC, Chai, YF, Wang, C, Lu, CY. 2017

[11]Determination Of Multiple Pesticide Residues I.n Teas By Gas C hromatography With Accurate Time-Of-Flight Mass Spectrometry. Li, Jianxun,Li, Jianxun,Fan, Chunlin,Teng, Xiaoyu,Zhang, Zijuan,Wang, Wenwen. 2019

[12]Analytical Approach, Dissipation Pattern And R.isk Assessment Of Pesticide R esidue In Green Leafy Vegetables: A Comprehensive Review. Farha, W, Abd El-Aty, AM, Rahman, MM, Jeong, JH, Shin, HC, Wang, J, Shin, SS, Shim, JH. 2018

[13]Evaluation Of Transfer Rates Of M.ultiple Pesticides From Green T ea Into Infusion Using Water As Pressurized Liquid Extraction Solvent And Ultra-Performance Liquid Chromatography Tandem Mass Spectrometry. Chen, HP, Pan, ML, Liu, X, Lu, CY. 2017

[14]Electrospinning and nanofibers: Building drug delivery systems and potential in pesticide delivery. Shangguan W., Li S., Cao L., Wei M., Wang Z., Xu H.. 2022

[15]Carbon Nanomaterial-Enabled Pesticide Biosensors: Design S.trategy, Biosensing Mechanism, And P ractical Application. Zhao, FN, Wu, J, Ying, YB, She, YX, Wang, J, Ping, JF. 2018

[16]Transfer Of Pesticide Residue During T.ea Brewing: Understanding The E ffects Of Pesticide'S Physico-Chemical Parameters On Its Transfer Behavior. Wang, XR, Zhou, L, Zhang, XZ, Luo, FJ, Chen, ZM. 2019

[17]Worldwide Decline Of The Entomofauna: A. Review Of Its D rivers. Sanchez-Bayo, F, Wyckhuys, KAG. 2019

[18]Index Design And Safety Evaluation O.f Pesticides Application Based O n A Fuzzy Ahp Model For Beverage Crops: Tea As A Case Study. Chen, ZM, Zhou, L, Yang, M, Luo, FJ, Lou, ZY, Zhang, XZ, Sun, HZ, Wang, XR. 2019

[19]Enantioselective Monitoring Of Chiral Fungicide F.amoxadone Enantiomers In Tomato, A pple, And Grape By Chiral Liquid Chromatography With Tandem Mass Spectrometry. Xu, GF, Jia, XH, Wu, XH, Xu, J, Liu, XG, Pan, XL, Li, RA, Li, XH, Dong, FS. 2018

[20]Screening Of Pesticide Residues In Traditional Chinese Medicines Using Modified Quechers Sample Preparation Procedure And Lc-Ms/Ms Analysis. Li, RX, Li, MM, Wang, T, Wang, TL, Chen, JY, Francis, F, Fan, B, Kong, ZQ, Dai, XF. 2020

作者其他论文 更多>>