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Microwave plasma torch mass spectrometry for some rare earth elements

Journal

ARABIAN JOURNAL OF CHEMISTRY
Volume 15, Issue 12, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.arabjc.2022.104379

Keywords

Microwave plasma torch; Ambient Mass Spectrometry; Fieldable ion source; Rare earth elements

Funding

  1. National Science Foundation, China
  2. science and technology research project foundation of Jiangxi Provincial Department of education, China
  3. Guangdong International Science and Technology Coop-eration Project, China
  4. [21866027]
  5. [GJJ190881]
  6. [2018A050506020]

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Rare earth elements (REEs) have been widely used in modern industry and material science due to their unique chemical properties and luminescence properties. However, their environmental pollution has also received attention. Tracing and controlling the impact of REEs on the environment and developing highly sensitive methods for REEs analysis are of practical significance. Microwave plasma torch (MPT) is a simple, low-power plasma generator that can be used for the analysis of metal elements in aqueous solutions. Compared to traditional methods, MPT-MS has higher sensitivity and requires minimal pretreatment.
Rare earth elements (REEs) have been widely applied in modern industry and material science due to their special chemical properties and luminescence properties, but their environment pollution problem has also attracted attention. How to trace and control impact of REEs on envi-ronment and develop highly sensitive methods for REEs analysis have practical significance. Micro-wave plasma torch (MPT) is a kind of simple, low power consumption (-200 W) and easily operated plasma generators. When it was coupled with varied mass spectrometers as ion source of mass spectrometry (MS), i.e. MPT-MS can use for the analysis of metal elements in aqueous with the remarkable advantage of only minimal or even no simple pretreatment, and can meet compre-hensive requirements of environmental control and water quality monitoring. MPT-MS have also an ability to carry out online real-time monitoring and analysis of water environment. Compared with the traditional ICP-MS, it can obtain more effective information and has higher sensitivity (the detection limit is at sub-ppb level). This paper reviews common methods and research progress of REEs analysis in recent years. Practical applications and advantages of MPT in the analysis of REEs are briefly summarized. Specifically, this paper introduces some work recently done in our group on analysis of REEs by the MPT, including analysis of metal elements distribution in water samples in local Poyang Lake, and general rules of formation and behavior of complex metal ions in the MPT plasma are also proposed afterwards. Through the practically dealing with the Poyang Lake case by the MPT, hopefully this would interest more academia into this area so as to speed up development of the MPT itself.(c) 2022 The Author(s). Published by Elsevier B.V. on behalf of King Saud University. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).

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