Mulago Hill Diagnostics Ltd

Inductively Coupled Plasma Mass Spectrometry (ICP-MS)

The unique interference management with the iCRC, brings fast, simple and effective removal of molecular (spectroscopic) interferences to ICP-MS analysis and guarantees excellent longterm stability with tough samples. Fast switching between gases and BOOST technology raise productivity.

The PlasmaQuant ICP-MS achieves up to 50% lower plasma operating costs. A unique inductively coupled plasma ionization source allows running the ICP-MS on less than 9 L/min argon gas while at the same time providing an exceptional matrix tolerance at low oxide formation (<2% CeO+/Ce+). The all-digital detection system of the PlasmaQuant MS provides 11 orders of analytical range (0.1-1010 cps) in pulse-counting mode only. This allows accurate multielement analysis from ultra-trace to major levels in a single measurement and guarantees an exceptional detector lifetime.

The unparalleled level of sensitivity of the PlasmaQuant MS provides you with analytical advantages that are clearly reflected in efficiency and lower costs per sample. The patented spectrometer design of the ICP-MS systems provide for the lowest detection limits and consistent analytical quality for extremely short integration times and high dilution factors. This ensures high throughput, long-term stability, and reproducible results, while significantly reducing your maintenance costs.

  • Best detection limits
  • High throughput
  • Reduced sample preparation
  • Robust performance
  • Low maintenance requirements
  • Sensitive – 1500 Mcps/ppm at <2 % CeO
  • Cost-effective – half the argon consumption
  • Fast – 50 % higher sample throughput
  • Robust – matrix-independent long-term stability
  • Versatile – optimized for research and routine use


  • Analysis of Rare Earth Elements by ICP-OES and ICP-MS − Potentials and Limitations
  • Determination of Trace Elements in Copper by ICP-MS
  • Trace Metals Analysis in High Purity Gold Using PlasmaQuant MS Elite
  • Analysis of Geological Materials for Rare Earth Elements on the PlasmaQuant MS Elite
  • Analysis of Metal Alloys using LA-ICP-MS
  • Analysis of Low Level Beryllium in Urine Using the PlasmaQuant MS
  • Multi-element Analysis of Biological Materials by ICP-MS using Alkali Dilution
  • Analysis-of-Nickel-Metal-Alloys-by-LA-ICP-MS
  • Elemental Impurities in Pharmaceutical Materials According to New ICH Guidelines and USP Chapters <232> and <233>
  • BOOSTing limits of detection for chromium and other trace elements in whole blood
  • Iron Isotope Ratios in Human Whole Blood by ICP-MS
  • Analysis of Trace Metals in Cannabis and Cannabis Products by ICP-MS
  • High-precision analysis of glass samples with superior sensitivity using LIBS and LA-ICP-MS
  • Determination Trace Elements in Toys
  • Elemental Mapping of Printed Ink Using the J200 Tandem LA-LIBS Instrument in Combination with the PlasmaQuant MS Elite
  • Determination of Trace Elements and Isotope Ratios in Borated Cooling Water of Nuclear Power Plant
  • Analysis of Food and Agricultural Samples Using ICP-MS PlasmaQuantMS
  • Monitoring Drinking Water Quality with the PlasmaQuant M
  • Ultra-Trace Determination of Mercury in Environmental Waters by ICP-MS
  • Speciation of Arsenic in Apple Juice by LC-ICP-MS on PlasmaQuant MS Elite
  • Analysis of Marine Sediments and Sewage Sludge by PlasmaQuant MS
  • Analysis of Elemental Impurities in Naphtha by ICP-MS According to ASTM D8110-17

Analaytik Jena Manufactures and Supplies the only ICP-MS systems which provide the lowest detection limits and consistent analytical quality for extremely short integration times and high dilution factors.

PlasmaQuant MS Series
The market leading sensitivity of the PlasmaQuant MS instruments guarantees lowest detection limits. The outstanding mass separation and lowest abundance sensitivity allow the detection of ultra-low element (species) concentrations and single particles with less than 5 nm diameter as well as a superior isotope ratio precision. The outstanding sensitivity allows reducing the measurement time considerably without sacrificing precision and reproducibility.

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