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Development and evaluation of an externally air-cooled low-flow torch and the attenuation of space charge and matrix effects in inductively coupled plasma mass spectrometry

机译:外部风冷低流量割炬的开发和评估以及电感耦合等离子体质谱法中空间电荷和基质效应的衰减

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摘要

An externally air-cooled low-flow torch has been constructed and successfully demonstrated for applications in inductively coupled plasma mass spectrometry (ICP-MS). The torch is cooled by pressurized air flowing at ∼70 L/min through a quartz air jacket onto the exterior of the outer tube. The outer gas flow rate and operating RF forward power are reduced considerably. Although plasmas can be sustained at the operating power as low as 400 W with a 2 L/min of outer gas flow, somewhat higher power and outer gas flows are advisable. A stable and analytical useful plasma can be obtained at 850 W with an outer gas flow rate of ∼4 L/min. Under these conditions, the air-cooled plasma produces comparable sensitivities, doubly charged ion ratios, matrix effects and other analytical merits as those produced by a conventional torch while using significantly less argon and power requirements. Metal oxide ion ratios are slightly higher with the air-cooled plasma but can be mitigated by reducing the aerosol gas flow rate slightly with only minor sacrifice in analyte sensitivity;A methodology to alleviate the space charge and matrix effects in ICP-MS has been developed. A supplemental electron source adapted from a conventional electron impact ionizer is added to the base of the skimmer. Electrons supplied from this source downstream of the skimmer with suitable amount and energy can neutralize the positive ions in the beam extracted from the plasma and diminish the space charge repulsion between them. As a result, the overall ion transmission efficiency and consequent analyte ion sensitivities are significantly improved while other important analytical aspects, such as metal oxide ion ratio, doubly charged ion ratio and background ions remain relatively unchanged with the operation of this electron source. This technique not only improves the ion transmission efficiency but also minimizes the matrix effects drastically. The matrix-induced suppression of signal for even the most troublesome combination of light analyte and heavy matrix elements can be attenuated from 90--99% to only 2--10% for 2 mM matrix solutions with an ultrasonic nebulizer. The supplemental electron current can be adjusted to \u22titrate\u22 out the matrix effects as desired.
机译:已经构造了外部风冷低流量割炬,并成功证明了其在电感耦合等离子体质谱(ICP-MS)中的应用。焊枪被压缩空气以约70 L / min的速度通过石英空气夹套冷却到外管外部。外部气体流速和工作RF正向功率大大降低。尽管可以以2 L / min的外部气流将等离子体维持在低至400 W的工作功率,但建议使用更高的功率和外部气流。可以在850 W下获得稳定且分析有用的血浆,外部气体流速约为4 L / min。在这些条件下,空冷等离子体产生的灵敏度,双电荷离子比率,基体效应和其他分析优点可与传统割炬产生的相当,同时使用的氩气和功率需求明显减少。空冷等离子体中的金属氧化物离子比率略高,但可以通过略微降低气溶胶气体流速来降低,而只需要稍稍牺牲分析物灵敏度即可;已开发出减轻ICP-MS中空间电荷和基体效应的方法。从传统的电子碰撞电离器改编的补充电子源被添加到撇渣器的底部。从分离器下游的该源提供的电子具有适当的量和能量,可以中和从等离子体中提取的电子束中的正离子,并减少它们之间的空间电荷排斥。结果,整体离子传输效率和随之而来的分析物离子敏感性得到了显着改善,而其他重要的分析方面,例如金属氧化物离子比,双电荷离子比和背景离子在此电子源的操作下保持相对不变。该技术不仅提高了离子传输效率,而且大大降低了基体效应。对于使用超声雾化器的2 mM基质溶液,即使是最麻烦的轻质分析物和重质基质元素组合,基质引起的信号抑制也可以从90--99%衰减到2--10%。可以根据需要将补充电子电流调整为矩阵效应。

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    Praphairaksit, Narong;

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  • 年度 2000
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  • 原文格式 PDF
  • 正文语种 en
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