MaxxiFlux Pre Cast

OREGON LABWARE

MAXXIFlux, our line of fluxes, is constituted by lithium tetraborate, lithium metaborate and mixtures in various proportions.

The use of fluxes is necessary in techiniques such as: Spectrometers of X-ray emission, atomic

absorption, spectrophotometers, ICP or classical analytical techniques. The main application is in the production of fused beads to the X-ray fluorescence analysis.

The fusion is the dissolution on the sample of flux. The oxides are easily dissolved in Lithium borates. The Lithium Tetraborate (Li2B4O7 -m.p. 920° C ), by having and acid feature react better with basic oxides, as for example the CaO. Therefore, the Lithium metaborate (LiBO2 – m.p. 850°C), which has basic characteristic reacts easily with acid oxides, for example: SiO2.

MAXXIFlux has a high purity level and analytical accuracy, high density, and can be pre-fused.

with the fluxes or not.

We also manufacture a line of additives, for example: bromides, iodides, which are used in conjunction

These additives, are non wetting agents, which allows he fused tablets to drop more easily from the casting dish.

 

Line Pre-Fused:

  • High density, reducing the volume of the flux in the crucibles.
  • Low loss on ignition (LOI).
  • No dust.
  • Controlled particle size.
Maxxi Flux

Technical Characteristics

Stock#NameComposition%Melting Point (°C)Density (g/cm³)Typical Applications
00401EMF1000Lithium Tetraborate100~920>1.0Carbonates, Aluminosilicates
00445EMF1000Lithium Tetraborate
Lithium Bromide
99,5
0,5
~920>1.0Carbonates, Aluminosilicates
00455EMF1000Lithium Tetraborate
Lithium Iodide
99,5
0,5
~920>1.0Carbonates, Aluminosilicates
00409EMF1000ALithium Metaborate100~845>1.0Sulfate, Phosphate, Silica, Sands, Clay
00485EMF1000ALithium Metaborate
Lithium Bromide
98,5
1,5
~845>1.0Petroleum, Bauxite
00483EMF1000BLithium Tetraborate
Lithium Metaborate
20
80
~840>1.0Aluminosilicates, Alumina, Cement, Iron
00496EMF1222DLithium Tetraborate
Lithium Metaborate
35
65
~825>1.0Aluminosilicates, Alumina, Bauxite, Iron Ore
00469EMF1222DLithium Tetraborate
Lithium Metaborate
Lithium Bromide
34,83
64,67
0,5
~825>1.0Aluminosilicates, Alumina, Bauxite, Iron Ore
00435EMF1010Lithium Tetraborate
Lithium Metaborate
66,5
33,5
~875>1.0Cement, Aluminosilicates, Refractory Lime
00440EMF1010Lithium Tetraborate
Lithium Metaborate
Lithium Bromide
66,67
32,83
0,5
~875>1.0Cement, Aluminosilicates, Refractory Lime
00441EMF1010Lithium Tetraborate
Lithium Metaborate
Lithium Iodide
66,67
32,83
0,5
~875>1.0Cement, Aluminosilicates, Refractory Lime
00446EMF1010ALithium Tetraborate
Lithium Metaborate
50
50
~870>1.0Silicates, Limestones Materials, Chrome Ore, Sands
00463EMF1010ALithium Tetraborate
Lithium Metaborate
Lithium Bromide
49,75
49,75
0,5
~870>1.0Silicates, Limestones Materials, Chrome Ore, Sands
00439EMF1010ALithium Tetraborate
Lithium Metaborate
Lithium Bromide
49,5
49,5
1
~870>1.0Silicates, Limestones Materials, Chrome Ore, Sands
00454EMF1010ALithium Tetraborate
Lithium Metaborate
Lithium Iodide
49,75
49,75
0,5
~870>1.0Silicates, Limestones Materials, Chrome Ore, Sands

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consisting of lithium tetraborate, lithium metaborate and their mixtures in various proportions ...