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03286

Supelco

Florisil®

for the determination of hydrocarbon acc. to ISO 9377-2

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CAS Number:
EC Number:
MDL number:
PubChem Substance ID:
NACRES:
SB.52

grade

standard

description

ratio of stearyl stearate peakarea <= 1.0 treated/untreated
recovery rate >= 80%

form

powder

quality

for the determination of hydrocarbon acc. to ISO 9377-2

technique(s)

LPLC: suitable

surface area

289 m2/g

matrix

Magnesium silicate hydrate

matrix active group

magnesium silicate hydrate

particle size

60-100 mesh

pore size

60 Å mean pore size

separation technique

hydrophilic interaction (HILIC)

SMILES string

[Mg++].[O-][Si]([O-])=O

InChI

1S/Mg.O3Si/c;1-4(2)3/q+2;-2

InChI key

FKHIFSZMMVMEQY-UHFFFAOYSA-N

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This Item
1.129941.1251820280-U
Florisil&#174; for the determination of hydrocarbon acc. to ISO 9377-2

Supelco

03286

Florisil®

Florisil&#174; PR grade, 60-100&#160;mesh, coarse powder

Supelco

20280-U

Florisil®

form

powder

form

-

form

-

form

coarse powder

quality

for the determination of hydrocarbon acc. to ISO 9377-2

quality

-

quality

-

quality

-

technique(s)

LPLC: suitable

technique(s)

-

technique(s)

-

technique(s)

LPLC: suitable

surface area

289 m2/g

surface area

-

surface area

-

surface area

289 m2/g

matrix

Magnesium silicate hydrate

matrix

-

matrix

-

matrix

Magnesium silicate hydrate

Application

suitable for the determination of mineral oil in water acc. to ISO 93772, section 9.6

Legal Information

Florisil is a registered trademark of U.S. Silica Company

Storage Class Code

13 - Non Combustible Solids

WGK

nwg

Flash Point(F)

Not applicable

Flash Point(C)

Not applicable

Personal Protective Equipment

dust mask type N95 (US), Eyeshields, Gloves

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Florisil was employed for the sorption of antimony ions from aqueous solutions. A detailed study of the process was performed by varying the sorption time, pH, and temperature. The sorption was found to be fast, equilibrium was reached within 15
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A directly compressible excipient has been developed by co-processing starch with magnesium silicate. The foregoing was achieved either by co-precipitation of magnesium silicate onto different types of starch or by dry granulation of maize starch with magnesium silicate. A variety

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