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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Improvement of the capabilities of inductively coupled plasma optical emission spectrometry by replacing the desolvation system of an ultrasonic nebulization system with a pre-evaporation tube
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Improvement of the capabilities of inductively coupled plasma optical emission spectrometry by replacing the desolvation system of an ultrasonic nebulization system with a pre-evaporation tube

机译:通过用预蒸发管代替超声雾化系统的去溶剂化系统,提高电感耦合等离子体发射光谱的能力

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The effect of replacing the desolvation system (i.e., heater/condenser (HC) and membrane desolvator (MD)) of an ultrasonic nebulizer (USN) system with a pre-evaporation tube (PET) that is heated to about 400 °C on the analytical capabilities of inductively coupled plasma optical emission spectrometry (ICP-OES) was investigated. A multivariate optimisation was conducted in each case to find operating conditions maximizing plasma robustness. Under optimum conditions, the analytical performance of ICP-OES was significantly improved (i.e., better sensitivity, detection limit and plasma robustness) with USN-PET compared to that achieved with both the commercially-available USN-HC-MD and a conventional pneumatic nebulizer/spray chamber sample introduction system. However, only the USN-PET approach allows the determination of Hg, which appears to otherwise be lost in the heater/condenser system. Using a simple external calibration, without any matrix matching, and using an argon emission line for internal standardization, the results obtained for the determination of trace elements in certified soil reference materials (SRM 2710 and 2711) by USN-PET were in good agreement with certified values. This is unlike with conventional sample introduction systems where internal standardization using an Ar line is unusual, as it does not compensate for physical interferences, and either internal standardization (with internal standards added to the sample and standard solutions) or matrix-matched calibration is required.
机译:用预蒸发管(PET)替换超声雾化器(USN)系统的去溶剂化系统(即,加热器/冷凝器(HC)和膜去溶剂器(MD))的效果,该预蒸发管在PET上加热至约400°C研究了电感耦合等离子体发射光谱法(ICP-OES)的分析能力。在每种情况下均进行了多变量优化,以找到使血浆强度最大化的运行条件。在最佳条件下,与市售USN-HC-MD和常规气动雾化器相比,USN-PET可以显着改善ICP-OES的分析性能(即,灵敏度,检测限和血浆坚固性更高) /喷雾室样品引入系统。但是,只有USN-PET方法才能确定汞,否则汞似乎会在加热器/冷凝器系统中丢失。使用简单的外部校准,无需任何基质匹配,并使用氩气排放管线进行内部标准化,USN-PET用于测定经认证的土壤参考材料(SRM 2710和2711)中的痕量元素的结果与认证值。这与常规样品引入系统不同,常规样品引入系统使用Ar线进行内部标准化是不常见的,因为它无法补偿物理干扰,因此需要进行内部标准化(将内部标准添加到样品和标准溶液中)或进行基质匹配的校准。

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