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吡虫啉在稻田土壤中的代谢降解

Metabolic degradation of imidacloprid in paddy field soil.

作者信息

Akoijam Romila, Singh Balwinder

机构信息

Pesticide Residue Analysis Laboratory, Department of Entomology, Punjab Agricultural University, Ludhiana, Punjab, 141004, India,

出版信息

Environ Monit Assess. 2014 Oct;186(10):5977-84. doi: 10.1007/s10661-014-3833-3. Epub 2014 Jun 3.

Abstract

The metabolic degradation and persistence of imidacloprid in paddy field soil were investigated following two applications of imidacloprid at 20 and 80 g a.i. ha(-1) at an interval of 10 days. The soil samples were collected at various time intervals. The limit of quantification for the analysis of imidacloprid and its metabolites was obtained at the concentration of 0.01 mg kg(-1). The initial deposits of total imidacloprid were found to be 0.44 and 1.61 mg kg(-1) following second applications. These residues could not be detected after 60 and 90 days following second applications of imidacloprid at lower and higher dosages, respectively. In soil, urea metabolite was found to be the maximum, followed by olefine, nitrosimine, 6-chloronicotinic acid, 5-hydroxy and nitroguanidine. The half-life values (t₁/₂) of imidacloprid were worked out to be 12.04 and 11.14 days, respectively, when applied at lower and higher doses, respectively.

摘要

按照间隔10天两次施用20克和80克有效成分/公顷的吡虫啉,研究了吡虫啉在稻田土壤中的代谢降解和残留情况。在不同时间间隔采集土壤样品。分析吡虫啉及其代谢物的定量限为0.01毫克/千克。第二次施用后,总吡虫啉的初始沉积量分别为0.44毫克/千克和1.61毫克/千克。在分别以较低和较高剂量第二次施用吡虫啉后的60天和90天后,未检测到这些残留。在土壤中,发现尿素代谢物含量最高,其次是烯烃、亚硝基亚胺、6-氯烟酸、5-羟基和硝基胍。吡虫啉分别以较低和较高剂量施用时,其半衰期值(t₁/₂)分别为12.04天和11.14天。

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