Status of Pyrethroid Pesticide Pollution in Agricultural Products and Technologies for Its Removal: A Review

被引:2
|
作者
Chen Y. [1 ]
Lai J. [1 ]
Zhang M. [1 ]
Zhao T. [1 ]
Wang S. [1 ]
Li J. [1 ]
Liu S. [1 ,2 ]
机构
[1] College of Food Science, Sichuan Agricultural University, Ya'an
[2] Institute of Food Processing and Safety, Sichuan Agricultural University, Ya'an
来源
Shipin Kexue/Food Science | 2022年 / 43卷 / 09期
关键词
Agricultural products; Food safety; Pollution status; Pyrethroid pesticides; Removal techniques;
D O I
10.7506/spkx1002-6630-20210118-202
中图分类号
学科分类号
摘要
Pyrethroid pesticides are widely used in agricultural production due to their stability and high effectivity. The problem of pyrethroid residues in agricultural products has become increasingly prominent, posing a threat to food safety.The problem of pesticide residues has attracted growing attention from consumers and researchers. Therefore, it is urgent to understand the pollution status of pyrethroid pesticides in agricultural products and seek effective measures to control it. This article introduces the characteristics of pyrethroid pesticides and describes the current status of pyrethroid pesticide residues in agricultural products globally. Besides, it summarizes the technologies for the removal of pyrethroid pesticides and outlines future prospects for the development of new technologies in this field. We expect that this article will provide a reference for reducing pyrethroid pesticide residues in agricultural products and ensuring the safety of agricultural products. © 2022, China Food Publishing Company. All right reserved.
引用
收藏
页码:285 / 292
页数:7
相关论文
共 76 条
  • [1] 42, 2
  • [2] GRUNG M, LIN Yan, ZHANG Hua, Et al., Pesticide levels and environmental risk in aquatic environments in China: a review, Environment International, 81, pp. 87-97, (2015)
  • [3] SODERLUND D M., Molecular mechanisms of pyrethroid insecticide neurotoxicity: recent advances, Archives of Toxicology, 86, 2, pp. 165-181, (2012)
  • [4] FRANK D F, MILLER G W, HARVEY D J, Et al., Bifenthrin causes transcriptomic alterations in mTOR and ryanodine receptor-dependent signaling and delayed hyperactivity in developing zebrafish (Danio rerio), Aquatic Toxicology, 200, pp. 50-61, (2018)
  • [5] WERNER I, YOUNG T M., Pyrethroid insecticides-exposure and impacts in the aquatic environment, Encyclopedia of the Anthropocene, 5, pp. 119-126, (2018)
  • [6] KAVIRAJ A, GUPTA A., Biomarkers of type II synthetic pyrethroid pesticides in freshwater fish, BioMed Research International, 2014, 9, (2014)
  • [7] PEREZ-FERNANDEZ V, GARCIA M A, MARINA M L., Characteristics and enantiomeric analysis of chiral pyrethroids, Journal of Chromatography A, 1217, 7, pp. 968-989, (2010)
  • [8] ZHAN Hui, HUANG Yaohua, LIN Ziqiu, Et al., New insights into the microbial degradation and catalytic mechanism of synthetic pyrethroids, Environmental Research, 182, (2020)
  • [9] WURZEL S, FORD M A, DORITY D, Et al., Evaluating the impact of permethrin on non-target invertebrates in an urban stream, Hydrobiologia, 847, 1, pp. 91-104, (2020)
  • [10] IYYADURAI R, PETER J V, IMMANUEL S, Et al., Organophosphatepyrethroid combination pesticides may be associated with increased toxicity in human poisoning compared to either pesticide alone, Clinical Toxicology, 52, 5, pp. 538-541, (2014)