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首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Metsulfuron-methyl determination in environmental samples by solid surface fluorescence
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Metsulfuron-methyl determination in environmental samples by solid surface fluorescence

机译:通过固体表面荧光在环境样品中测定甲状腺核测定

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A new environmental friendly methodology for metsulfuron-methyl quantification based on the fluorescent signal enhancement of rhodamine B dye has been developed. A cationic surfactant (cetyltrimethylammonium bromide, CTAB) and an anionic one (sodium dodecylsulfate) were employed to preconcentrate the herbicide using a coacervation phenomenon, in sodium borate buffer medium (pH 9.2). The coacervate phase was collected on a nylon membrane (0.45 pm) and the solid surface fluorescence signal was determined (lambda(exc) = 515 nm, lambda(en), = 565 nm). Experimental variables that influence on preconcentration step and fluorimetric sensitivity have been studied and optimized using response surface methodology. Under optimal working conditions, a LOD of 0.17 mu g L-1 and a LOQ 0.53 mu g L-1 was obtained. The zeroth order regression calibration was linear from 0.53 to 5.0014 L-1 . The method showed adequate sensitivity and selectivity, and was applied to the determination of trace amounts of metsulfuron-methyl in environmental water samples. The proposed methodology implies an alternative to traditional techniques for metsulfuron-methyl monitoring using an accessible instrument in control laboratories, representing a contribution in the toxicological and environmental areas for the monitoring of MSM in environmental samples, in agreement with the Green Chemistry. (C) 2018 Elsevier B.V. All rights reserved.
机译:已经开发了一种新的基于荧光线B染料荧光信号增强的核甲基定量的新的环保方法。使用阳离子表面活性剂(十六烷基三甲基溴化铵,CTAB)和阴离子一(十二烷基硫酸钠)使用硼酸钠缓冲介质(pH 9.2)中的凝聚现象预浓缩除草剂。收集在尼龙膜(0.45mP)上收集的凝聚相,测定固体表面荧光信号(Lambda(Exc)= 515nm,λ(en),= 565nm)。研究和优化了对前浓缩步骤和荧光灵敏度影响的实验变量。在最佳工作条件下,获得0.17μg1-1和LOQ0.53μg1-1的床。零顺序回归校准从0.53到5.0014 L-1线性。该方法表现出足够的敏感性和选择性,并应用于环境水样中含痕量溴磺仑 - 甲基的敏感性和选择性。所提出的方法意味着使用在控制实验室中的可接近仪器的孔磺伦 - 甲基监测的传统技术替代,代表了与绿色化学的环境样本中MSM监测MSM的毒理学和环境领域的贡献。 (c)2018 Elsevier B.v.保留所有权利。

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