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首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Application of simple ultrasonic assisted extraction coupled with HPLC and GC/MS for the determination of surface active compounds in atmospheric particulate matter
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Application of simple ultrasonic assisted extraction coupled with HPLC and GC/MS for the determination of surface active compounds in atmospheric particulate matter

机译:简单超声辅助提取的应用与HPLC和GC / MS相结合,用于测定大气颗粒物质中的表面活性化合物

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A large number of surface-active compounds emitted from the biomass burning effect the atmospheric environment. A more accurate method is needed to analyze and understand the chemical composition of surface active compounds. Herein we report a fast and simple method for the determination of surface active compound in particulate matter from the ambient air. Atmospheric particulate matter from study area was collected with high volume air sampler during biomass burning haze episode period. The particulate matter was extracted by ultrasonic assisted extraction, a technique that is shown to be simple and fast for the extraction of the surface-active compound with a high efficiency as comparable to other extraction techniques. Sample analysis was carried out by ultrasonic methanol extraction followed by HPLC and GC/MS detection to better understand the chemical composition of surface active compounds in atmospheric particulate matter. HPLC analysis performed with gradient mode using acetonitrile: acetate buffer solution of pH 5.4 with fluorescence detector while GC/MS analysis performed with sample derivatization with 10% BF3-methanol. This is quick and simple procedures and a large number of the surface-active compounds were identified. The result shows that monocarboxylic, dicarboxylic, and polyacidic compounds, levoglucosan and aromatic hydrocarbon are the main surface active compounds in atmospheric particulate becauk of their surface active potential. From the result, it is noticed that both the techniques appear suitable for the analysis of surface active compounds in the atmospheric particulate matter since they provide low detection limits. The backward air trajectories from Kampar in the north of peninsular Malaysia confirmed that nearly all the winds paths originate from Sumatera and Kalimantan, Indonesia. (C) 2016 Elsevier B.V. All rights reserved.
机译:从生物质燃烧效果的大量表面活性化合物效果大气环境。需要一种更准确的方法来分析和理解表面活性化合物的化学成分。在此,我们报告了一种快速而简单的方法,用于从环境空气中测定颗粒物质中的表面活性化合物。在生物质燃烧的雾度集发作期间,用大容量空气采样器收集来自研究区域的大气颗粒物质。通过超声辅助萃取提取颗粒物质,该技术被示出为简单且快速地用于提取表面活性化合物,其具有高效率,与其他提取技术相当。通过超声甲醇萃取,然后通过HPLC和GC / MS检测进行样品分析,以更好地了解大气颗粒物质中表面活性化合物的化学成分。使用乙腈的梯度模式进行HPLC分析:使用荧光检测器的pH 5.4的乙酸盐缓冲溶液,而GC / MS分析用与10%BF 3-甲醇的样品衍生化进行。这是快速简便的程序,并且鉴定了大量的表面活性化合物。结果表明,单羧酸,二羧酸和多兴奋剂,左旋葡聚糖和芳烃化合物是其表面活性电位的大气颗粒中的主要表面活性化合物。从结果中,注意到,由于它们提供低检测限制,所以似乎两种技术都适用于在大气颗粒物中分析表面活性化合物。来自Penansular Malaysia北部的Kampar的落后空气轨迹证实,几乎所有的风道都来自印度尼西亚的Sumatera和Kalimantan。 (c)2016年Elsevier B.v.保留所有权利。

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