ICP-MS Mass Spectrometer Model PlasmaMS300
Quick, Easy Measurement and Analysis


Application in the Field of Food Analysis
ICP-MS Mass Spectrometer Model PlasmaMS300
Determination of Trace Heavy Metals in Rice Samples
In this experiment, the reference materials GSB-22 and GBW08503b for biological component analysis are used, and the reference material for rice analysis is taken as the to-be-tested sample for the purpose of determining harmful elements such as Cd, Pb, As, and Cr

Application in the Field of Ore Material Analysis
ICP-MS Mass Spectrometer Model PlasmaMS300
Determination of Trace Impurities in Cobalt Carbonate Powder
In this experiment, a sample of Cobalt Carbonate powder is used to determine the impurity elements of Al, Cd, Cr, Cu, Mg, Mn, Zn, Pb. The test is conducted using PlasmaMS 300, with 50% Co as the matrix and 20ppb of Sc, Rh, Re as internal standards. The experimental results demonstrate that PlasmaMS 300 can fully meet the demands for testing trace elements in minerals.
Testing Results
The results of testing Cobalt Carbonate powder are shown in Table 1.

Detection Limit
The detection limit for the typical mineral analysis method is presented in Table 2

Application in the Field of Metallic Material Analysis
ICP-MS Mass Spectrometer Model PlasmaMS300
In this experiment, the performance of the LA-ICP-MS has been tested for metal analysis using standard materials. Five pieces of low alloy steel standard samples in GSBH40068-93 are taken as the experimental samples. Among the standards, No. 1, 2, 4, and 6 in GSBH40068-93 standard samples are used to plot the calibration curve, and No. 5 sample is selected as the to-be-tested sample.

Coupled with the laser ablation sampling system (LA 300), PlasmaMS 300 can achieve solid-state direct sampling, reducing matrix interference. During the coupling, the overall performance of the instrument remains stable, and all elements demonstrate excellent linearity. The results of content accuracy comparison strongly confirm the outstanding accuracy of PlasmaMS 300.
The application validates the potential of this coupling technology in the analysis of trace element distribution on material surfaces, proving its effectiveness as a powerful detection method for ore mineral composition and surface analysis.