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吡虫磷和吡螨甲酰胺与硝酸根自由基的非均相反应。

Heterogeneous reactions of pirimiphos-methyl and pirimicarb with NO3 radicals.

机构信息

Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.

出版信息

J Phys Chem A. 2012 Nov 8;116(44):10802-9. doi: 10.1021/jp3071635. Epub 2012 Oct 29.

Abstract

Pirimiphos-methyl (PMM) and pirimicarb (PM) are two typical N,N-dialkyl substituted pyrimidine pesticides. The heterogeneous reactions of suspended PMM and PM particles with NO(3) radicals are investigated using an online aerosol time-of-flight mass spectrometer and a real-time atmospheric gas analysis mass spectrometer. Three products for PMM and five products for PM are observed and assigned with the aid of GC/MS. Phosphoric acid 2-diethylamino-6-methyl-4-pyrimidinyl dimethyl ester and 2-(dimethylamino)-5,6-dimethyl-4-hydroxy-pyrimidine are the main reaction products observed for PMM and PM, respectively. The effective rate constants for the reactions of PMM and PM particles with NO(3) radicals are (9.9 ± 0.3) × 10(-12) and (7.5 ± 0.3) × 10(-13) cm(3) molecule(-1) s(-1), respectively, obtained using a mixed-phase relative rate method. Geometries and energies of transition states (TS) and intermediates (IM) are obtained by DFT calculation to elucidate the detailed mechanism of the P═S group oxidation into the P═O group for PMM. The theoretical studies present the reasonable intermediates including the S-oxide and the diradical (IM1(a) and IM2(a)). The mechanism explanation may provide useful information for understanding the degradation mechanism of organothionophosphorus compounds in the environment.

摘要

甲基嘧啶磷(PMM)和嘧啶威(PM)是两种典型的 N,N-二取代嘧啶类农药。利用在线气溶胶飞行时间质谱仪和实时大气气体分析质谱仪,研究了悬浮 PMM 和 PM 颗粒与 NO(3)自由基的非均相反应。借助 GC/MS 观察到了 PMM 的三种产物和 PM 的五种产物,并进行了分配。磷酸 2-二乙氨基-6-甲基-4-嘧啶基二甲酯和 2-(二甲氨基)-5,6-二甲基-4-羟基嘧啶是 PMM 和 PM 的主要反应产物。采用混合相相对速率法得到 PMM 和 PM 颗粒与 NO(3)自由基的反应的有效速率常数分别为(9.9 ± 0.3)×10(-12)和(7.5 ± 0.3)×10(-13)cm(3)分子(-1)s(-1)。通过 DFT 计算得到过渡态(TS)和中间体(IM)的几何形状和能量,以阐明 PMM 中 P═S 基团氧化为 P═O 基团的详细机理。理论研究提出了合理的中间体,包括 S-氧化物和自由基(IM1(a)和 IM2(a))。该机制解释可为理解环境中有机硫磷化合物的降解机制提供有用信息。

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