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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Sedimentation field-flow fractionation-inductively coupled plasma optical emission spectrometry:size-based elemental speciation of air particulates
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Sedimentation field-flow fractionation-inductively coupled plasma optical emission spectrometry:size-based elemental speciation of air particulates

机译:沉降场-流分离-电感耦合等离子体发射光谱:空气中基于尺寸的元素形态

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摘要

The applicability of sedimentation field-flow fractionation-inductively coupled plasma optical emission spectrometry (SdFFF-ICP-OES) was investigated for the elemental size characterization of air particulate matters less than 10 mum (PM_(10)).The effects of various dispersing agents and pH values on the dispersion stability of air particulates were examined by zeta potential measurement.Anionic surfactants,which were 0.1% FL-70~R (a powerful alkaline detergent) and 0.1% sodium dodecyl sulfate (SDS),exhibited zeta potential values more negative than -30 mV,suggesting that both surfactants could efficiently disperse air particulates.A 0.1 % FL-70 with pH 8 was chosen as both dispersing agent and carrier liquid.The developed SdFFF method provided satisfactory separation efficiency and reproducibility (<3% RSD).Broad size distributions were obtained for air particulate samples collected from five locations.Nonetheless,peak maxima and the distribution ranges of air particulates collected from one location were different from the others.Further,a hyphenated technique of SdFFF and ICP-OES was employed to study size-based elemental distribution of air particles.An ultrasonic nebulizer was used in order to increase sample transport efficiency and hence improve the sensitivity of ICP-OES detection.Aluminium,Fe,and Ti were detected across the whole size range of air particulate sample.
机译:研究了沉降场-流分离-电感耦合等离子体发射光谱法(SdFFF-ICP-OES)在小于10微米(PM_(10))的空气颗粒物的元素尺寸表征中的适用性。各种分散剂的影响Zeta电位法测定pH值和空气微粒分散稳定性。阴离子表面活性剂0.1%FL-70〜R(一种强碱性洗涤剂)和0.1%十二烷基硫酸钠(SDS)具有更高的zeta电位值。低于-30 mV的负电势,表明这两种表面活性剂都能有效地分散空气中的微粒。选择pH为8的0.1%FL-70作为分散剂和载液。改进的SdFFF方法提供了令人满意的分离效率和重现性(RSD <3%) )。从五个地点采集的空气颗粒样品均获得了较宽的尺寸分布。但是,峰值最大值和所采集空气颗粒的分布范围一个位置与另一个位置不同。此外,采用SdFFF和ICP-OES的联用技术研究了基于尺寸的空气颗粒元素分布。使用超声雾化器以提高样品传输效率,从而提高灵敏度ICP-OES的检测。在整个空气颗粒样品尺寸范围内检测到了铝,铁和钛。

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