HELGES – iCAP Q | Quadrupole Inductively Coupled Plasma Mass Spectrometry (Q-ICP-MS)

GFZ Helmholtz Centre for Geosciences
last updated: December 30, 2024

About the Laboratory

HELGES – iCAP Q | Quadrupole Inductively Coupled Plasma Mass Spectrometry (Q-ICP-MS)

GFZ Helmholtz Centre for Geosciences
@ Section 3.3 Earth Surface Geochemistry
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Description

To analyse element concentrations in a wide range of materials two Q-ICP-MS (iCAP Q by Thermo) are available. Samples can be analyses as solutions (e.g. water samples or rocks after acid-dissolution). Alternatively, a femtosecond laser ablation system can be coupled to the Q-ICP-MS for (in situ) micro-scale concentration analysis of solid samples.

Inductively Coupled Plasma Mass Spectrometry (ICP-MS) is a versatile method for fast concentration analysis. A sample aerosol is introduced into the inductively coupled plasma (ICP), were all elements are atomised, ionised. Transferred into vacuum, then the isotopes of each element are separated by the quadrupole mass analyser and detected by a secondary electron multiplier (SEM). A variety of sample introduction systems is available, e.g. solution aspiration into a spraychamber or direct analysis of solids by laser ablation.
With Q-ICP-MS most elements can be quantified with uncertainties typically less than 10 % relative. Detection limits vary, generally in the ppt to ppb range in solution, and >ppm range with laser ablation on solids. The iCAP Q ICP-MS is equipped with a collision reaction cell to minimise interferences caused by molecule formation in the plasma (e.g., ¹⁴N²⁺ on ²⁸Si⁺) and improves accuracy and detection limits on interference-prone isotopes. A metal free clean lab with filtered air laminar flow workstations is available for preparation of liquid and solid samples (e.g., acid dissolution, element separation). Here, low concentration samples can be prepared for analysis avoiding contamination.

Instruments

Analytical Methods

Laboratory Keywords

  • Quadrupole Inductively Coupled Plasma Mass Spectrometer

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