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Evaluation Of The Fate Of The Active Ingredients Of Insecticide Sprays Used Indoors

机译:室内杀虫剂有效成分去向的评估

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The fate of the active ingredients of insecticide sprays after use in indoor environments was investigated. Indoor air sampling was performed through two types of adsorbents, namely, TENAX TA and XAD-2 (10 L). After sampling, both adsorbents were ultrasonically extracted and analyzed by Gas Chromatography coupled to Mass Spectroscopy. The separation and analysis of the selected compounds were satisfactory and fast (duration of the chromatographic run: 40 min). The method was linear for all examined chemicals over the tested range (2 to 50 ng of absolute compound); limits of detection ranged from 0.42 to 1.32 ng of absolute compound. The method was then applied in the determination of the active ingredients of three commercially available insecticide sprays that were separately used in a full-scale environmental chamber (30 m~3). After spraying, the fate of the active ingredients [propoxur, piperonyl butoxide (PBO) and pyrethrin insecticides] was monitored over 40 minutes, with and without ventilation. Both adsorbent materials were proven to be efficient and the differences in the concentrations deriving from sampling with both materials were in almost all cases less than 10%. All chemicals were removed in rates that exceeded 80%, after the 40 minutes of monitoring, exhibiting different decay rates. The removal of insecticides was not significantly affected by the ventilation of the chamber. The correlation analysis of propoxur, PBO and pyrethrins with the aerosols of various sizes (15 fractions, from 0.3 to >20 μm) showed that propoxur and PBO mainly associated with the medium size aerosols (3-7.5 μm) while pyrethrins seem to link more with heavier particles (>10 μm).
机译:在室内环境中使用杀虫剂喷雾后,活性成分的去向进行了研究。室内空气采样是通过两种类型的吸附剂进行的,即TENAX TA和XAD-2(10 L)。采样后,将两种吸附剂超声提取并通过气相色谱-质谱联用进行分析。所选化合物的分离和分析令人满意且快速(色谱运行时间:40分钟)。对于所有在测试范围内(2至50 ng绝对化合物)的受检化学品,该方法均为线性。检测限范围为0.42至1.32 ng绝对化合物。然后将该方法用于测定三种可商购的杀虫喷雾剂的活性成分,这三种杀虫喷雾剂分别在满刻度的环境室(30 m〜3)中使用。喷雾后,在40分钟内监控通风和不通风情况下的活性成分[丙氧磷,胡椒基丁醚(PBO)和除虫菊酯杀虫剂]的去向。两种吸附材料均被证明是有效的,并且两种材料的采样所产生的浓度差异几乎在所有情况下均小于10%。在监控40分钟后,所有化学药品的去除率均超过80%,表现出不同的衰减率。箱内通风对杀虫剂的去除没有显着影响。丙氧磷,PBO和除虫菊酯与各种大小的气溶胶(从0.3到> 20μm的15个组分)的相关性分析表明,丙氧磷和PBO主要与中等大小的气溶胶(3-7.5μm)有关,而除虫菊酯似乎联系更多颗粒较重(> 10μm)。

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