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A conically fixed position single drop microextraction method for isolation of aryloxyphenoxypropionate herbicides from aquatic media

机译:圆锥固定位置单滴微萃取法从水生介质中分离芳氧基苯氧基丙酸芳酯除草剂

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A new and convenient format of single drop microextraction (SDME) was developed and applied for isolation of some selected aryloxyphenoxypropionate herbicides from aquatic media. In contrast to the conventional SDME procedure, in this set-up the extraction microdrop was positioned at the bottom of a conical vial in order to provide much higher stability for the organic extraction phase while a magnetic bar was used for stirring the aqueous solution. A simple magnet was used for positioning the bar on the top of the microdrop prior to stirring. The whole set-up led to the use of any volume of extraction solvent with unlimited stirring rates. Some important extraction parameters such as the type of solvent, stirring rate, temperature and extraction time were investigated and optimized. Selection of a microdrop volume of 3 ??L with a sampling time of 35 min along with the use of carbon tetrachloride as the most appropriate solvent led to the highest enrichment factors. The linearity was studied by preconcentration of 1 mL of water samples spiked with a standard solution of aryloxyphenoxypropionates in the concentration range of 0.1a€“300 ??g La?’1. The coefficient of determination was satisfactory (r2 0.99) for all the studied analytes and the relative standard deviation (RSD%) values under the optimized conditions were found to be in the range of 5.1 to 10.1% at the concentrations of 0.6 and 50 ??g La?’1. Detection limits were obtained to be in the range of 0.02a€“0.05 ??g La?’1 using time-scheduled selected ion monitoring (SIM). The developed method was successfully applied for the extraction and determination of aryloxyphenoxypropionates in river water samples.
机译:开发了一种新的方便的单滴微萃取(SDME)格式,并将其用于从水生介质中分离某些选定的芳氧基苯氧基丙酸酯除草剂。与常规SDME程序相反,在此设置中,将提取微滴放置在圆锥形样品瓶的底部,以便为有机提取相提供更高的稳定性,同时使用磁棒搅拌水溶液。在搅拌之前,使用一个简单的磁铁将棒放置在微滴的顶部。整个设置导致可以使用任何体积的萃取溶剂,且搅拌速率不受限制。研究并优化了一些重要的提取参数,如溶剂类型,搅拌速度,温度和提取时间。选择3 µL的微滴体积(采样时间为35分钟)以及使用四氯化碳作为最合适的溶剂可导致最高的富集因子。通过预浓缩1 mL水样品,加标浓度范围为0.1a?300?g La?1?的芳氧基苯氧基丙酸芳酯标准溶液来研究线性。测定的所有分析物的测定系数均令人满意(r2> 0.99),并且在0.6和50?的浓度下,优化条件下的相对标准偏差(RSD%)值在5.1%至10.1%的范围内。 La拉?'1。使用时间安排的选择离子监测(SIM),检出限在0.02a€0.05 0.05 g La?1范围内。该方法成功用于河流水样中芳氧基苯氧基丙酸酯的提取和测定。

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