A Modern Approach to Controlling ICP Spray Chamber Temperature - PowerPoint PPT Presentation

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A Modern Approach to Controlling ICP Spray Chamber Temperature

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Applications of the IsoMist. Analyze volatile solvents Low temp. ... Robert Thomas, Practical Guide to ICP-MS, Marcel Dekker, NY, 2004. ... – PowerPoint PPT presentation

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Title: A Modern Approach to Controlling ICP Spray Chamber Temperature


1
A Modern Approach to Controlling ICP Spray
Chamber Temperature
  • Jerry Dulude, Glass Expansion, jdulude_at_geicp.com

2
Limitations of Externally Controlled Spray
Chambers
  • Requires antifreeze solution
  • Requires bulky floor model chiller
  • Cumbersome coolant lines from chiller to chamber
  • Freezing of condensate on lines
  • Requires intricate jacketed chamber

3
Limitations of other Peltier Controlled Spray
Chambers
  • Lack of programmability
  • Insufficient cooling
  • Require external fluid supply
  • Limited temperature range
  • Limited compatibility

4
IsoMist Programmable Temperature Spray Chamber
5
Features of IsoMist
  • Powerful Peltier-effect chiller reaches -5C in 15
    minutes
  • Programmable from -10 to 60C in 1 degree
    increments
  • Maintains temperature to within 0.1 degree
  • Compact design (7.5x4x4 inches)
  • 100 self-contained (no external lines)
  • Incorporates Bluetooth technology for clean
    wireless control (USB available)

6
PC Screen showing IsoMist Software
7
Variety of Cyclonic Spray Chambers
  • Borosilicate glass most aqueous and organic
    applications
  • Quartz Trace boron determinations
  • PFA HF and ultra trace applications

8
Applications of the IsoMist
  • Analyze volatile solvents Low temp.
  • Reduce oxide interferences Low temp.
  • Lower detection limits High temp.
  • Increase stability Constant temp.

9
Determination of Trace Metals in Naphtha
  • Interfere with the cracking process
  • Poisoning of the catalysts
  • Environmental release concerns
  • Origin and migration markers

10
Spike Recoveries in Light NaphthaDirect (no
dilution)
11
Oxide Reduction in ICP-MSIsobaric oxide
interferences
Element/Isotope Interference
56Fe 40Ar16O
51V 35Cl16O
44Ca 14N14N16O
48Ti 32S16O
52Cr 34S18O
64Zn 32S16O16O
64Zn 48Ca16O
Robert Thomas, Practical Guide to ICP-MS, Marcel
Dekker, NY, 2004.
12
Reducing Oxides for ICP-MS
Data courtesy of David Jones, ALS Chemex,
Brisbane, Australia
13
Analysis of Limited Sample Volumes
  • Biological applications
  • Intracellular fluids
  • Neonatal samples
  • Forensic applications
  • Requires micro flow nebulization
  • Low DLs desirable

14
Effect of Temperature on Normalized LOD (20ul/min
Uptake)
PE Optima 2100DV
15
Constant temperature benefits
  • Environmental monitoring
  • Tighter CCVs
  • Fewer QCs
  • Higher productivity
  • Metal assays
  • Tighter bracketing
  • Higher accuracy

16
IsoMist Customization
Models
  • PE ICP ICP-MS
  • Varian ICP ICP-MS
  • Agilent ICP-MS
  • ThermoFisher ICP ICP-MS
  • Horiba J-Y ICP
  • Teledyne Leeman ICP
  • GBC ICP
  • Spectro ICP

Spray Chamber Materials
  • Borosilicate glass
  • Quartz
  • Inert PFA

17
Chassis Configurations of IsoMist
18
IsoMist on Optima 2100DV
19
IsoMist on Optima 2100DV
20
IsoMist on the Agilent 7500 ICP-MS
21
IsoMist on the Varian Vista MPX
22
IsoMist on the Varian Vista MPX
23
IsoMist on the Thermo iCAP 6500DV
24
IsoMist on the PE Elan 9000
25
IsoMist on the PE Elan 9000
26
Summary
  • Control of Spray chamber temperature enhances the
    capability of your ICP.
  • The IsoMist is easily installed.
  • The IsoMist is easily and precisely controlled.
  • Compatible with all major ICP-OES ICP-MS models.
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