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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >A contribution to the study of cooling a vertical-rotary spray chamber in inductively coupled plasma time-of-flight mass spectrometry
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A contribution to the study of cooling a vertical-rotary spray chamber in inductively coupled plasma time-of-flight mass spectrometry

机译:对电感耦合等离子体飞行时间质谱法中冷却垂直旋转喷雾室的研究做出了贡献

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摘要

A Wu-Hieftje vertical-rotary spray chamber was modified for cooling and characterized for its ability to reduce oxide species in inductively coupled plasma time-of-flight mass spectrometry. The temperature of the modified spray chamber could be reproducibly and effectively controlled by wrapping tygon tubing, through which chilled water flows, around the main body. Cooling the spray chamber from 20℃ to 5℃ yielded a 20% reduction in the interfering oxide level of ~(140)Ce~(16)O~+ on ~(156)Gd~+ without compromising detection limits. A corresponding decrease in the background-equivalent concentrations of the interfering species was also observed. Additionally, 1/f noise present in plasma-derived signals was less when the temperature of the spray chamber was lowered.
机译:对Wu-Hieftje垂直旋转雾化室进行了改造以进行冷却,并以其在电感耦合等离子体飞行时间质谱法中减少氧化物种类的能力为特征。修改后的雾化室的温度可以通过在主体上缠绕tygon管来控制,从而有效地控制冷冻水的流动。将喷雾室从20℃冷却到5℃可以使〜(156)Gd〜+上的〜(140)Ce〜(16)O〜+的干扰氧化物含量降低20%,而不会影响检测极限。还观察到干扰物质的背景当量浓度相应降低。另外,当降低喷雾室的温度时,血浆衍生信号中存在的1 / f噪声较小。

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