A Novel Approach for Assessing Technical Grade and Quality of Lambda-Cyhalothrin and Acetamiprid in Insecticides Used in Agricultural Systems by HPLC Technique in Southern Benin

Eric Tossou, Ghislain Tepa-Yotto, Genevieve M. Tchigossou, Murielle F. Soglo, Serge Foukmeniok Mbokou, Honorine Hortense Bougna Tchoumi, Aimé H. Bokonon-Ganta, Manuele Tamò, Rousseau Djouaka
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Abstract

In Benin, synthetic insecticides are the main pest control option used by farmers to protect and enhance their production. However, failures to control the target pests are often observed after application and may be related to agricultural practices or insecticide quality. The present work was designed to assess a rapid, simple, and reliable analytical method for detecting and quantifying the most commonly used insecticides (λ-cyhalothrin and acetamiprid) in Benin. The analytical standard technical grade separation was performed by gradient reversed-phase high-performance liquid chromatography on a C18 stationary-phase column. The mobile phase consisted of a mixture of acetonitrile/water using a gradient flow. The flow rates were 1 and 1.4 mL·min−1 for λ-cyhalothrin and acetamiprid, respectively. The analysis times were 15 and 20 min, with retention times of 2.35 and 7.94 min for λ-cyhalothrin and acetamiprid, respectively. Results reveal that most of the surveyed farmers were not educated (70% < Primary School Certificate) and were men (95%). Of the main insecticides applied by farmers, λ-cyhalothrin and acetamiprid were found to be the most technical-grade ones. Furthermore, the analysis of insecticides showed that the concentrations obtained in our study often differed from the ones mentioned on insecticide labels. The proposed method is useful for quantifying insecticides in various technical and commercial formulations with little interference from additives.
高效液相色谱技术评价贝宁南部农业系统杀虫剂中高效氯氰菊酯和啶虫脒技术等级和质量的新方法
在贝宁,合成杀虫剂是农民用来保护和提高产量的主要虫害防治选择。然而,在施用后经常观察到未能控制目标害虫,这可能与农业实践或杀虫剂质量有关。本工作旨在建立一种快速、简便、可靠的检测和定量贝宁最常用杀虫剂(λ-氯氟氰菊酯和啶虫脒)的分析方法。采用梯度反相高效液相色谱法,在C18固定相柱上进行分析标准品技术级分离。流动相由乙腈/水的混合物组成,采用梯度流动。λ-氯氟氰菊酯和啶虫脒的流速分别为1和1.4 mL·min−1。分析时间分别为15 min和20 min, λ-氯氟氰菊酯和啶虫脒的保留时间分别为2.35 min和7.94 min。调查结果显示,大部分受访农民未受过教育(70% <小学学历),男性占95%。在农民使用的主要杀虫剂中,λ-氯氟氰菊酯和啶虫脒是技术等级最高的。此外,对杀虫剂的分析表明,我们研究中得到的浓度经常与杀虫剂标签上的浓度不同。该方法可用于各种技术和商业配方中杀虫剂的定量,且受添加剂干扰小。
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