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Spark source mass principles

Principles and Characteristics The original idea of spark-source mass spectrometry (SSMS) is due to Dempster [356], long before the first commercial instruments. In spark-source MS, atomisation and ionisation... [Pg.650]

As the name implies, this is a mass spectrometric technique. The principle of mass spectrometry can be explained briefly with the aid of Figure 4.12, showing the diagram of a double-focusing instrument that is the type used in spark source mass spectrometry. [Pg.83]

In most analytical procedures, calibration is carried out by means of a calibration curve using com-pound(s) prepared with chemicals of an appropriate purity and verified stoichiometry. Matrix effects must often be taken into account and, consequently, the calibration solutions should be matrix-matched. CRMs of pure compounds may be used for calibration. However, matrix CRMs should in principle not be used for the purpose of calibration unless no other suitable calibrants are available, with the exception of those methods (e.g., spark source mass spectrometry, wavelength-dispersive XRF, etc.) that require calibration with CRMs of a similar, fully characterized matrix (e.g., metal alloys, cements). For such methods, accuracy can only be achieved when certified RMs are used for the calibration. [Pg.4031]

Beske, H.E., Hiurle, A., Jochum, K.P (1981) Part I. Principles of spark source mass spectrometry (SSMS). [Pg.930]

The rapid development of mass spectrometric technology and the wide field of applications exclude a complete and comprehensive discussion of mass spectrometric possibilities for trace analysis of metals. Therefore, this report will give a brief outline of the principles of mass spectrometry (MS) and the fundamentals of qualitative and quantitative mass spectrometric analysis with emphasis on recent developments and results. The classical methods of analysis of solids, i.e. spark-source MS and thermal ionization MS, as well as newer methods of metal analysis are described. Focal points in this survey of recently developed techniques include secondary ion MS , laser probe MS , plasma ion source MS gas discharge MS and field desorption MS . Here, a more detailed description is given and the merits of these emerging methods are discussed more explicitly. In particular, the results of the FD techniques in elemental analyses are reviewed and critically evaluated. [Pg.3]


See other pages where Spark source mass principles is mentioned: [Pg.648]    [Pg.3]    [Pg.3]    [Pg.1594]    [Pg.359]    [Pg.361]    [Pg.40]    [Pg.154]    [Pg.2781]    [Pg.371]    [Pg.354]    [Pg.426]   
See also in sourсe #XX -- [ Pg.361 ]




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