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29204

Sigma-Aldrich

Activated Charcoal Norit®

greener alternative

Norit® RB3, steam activated, rod

Synonym(s):

Charcoal activated Norit®

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About This Item

Empirical Formula (Hill Notation):
C
CAS Number:
Molecular Weight:
12.01
Beilstein:
4360473
EC Number:
MDL number:
UNSPSC Code:
23201100
PubChem Substance ID:
NACRES:
SB.52
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description

butane adsorption 18 - 23% (p/p0 = 1)

Quality Level

form

rod

quality

steam activated

manufacturer/tradename

Norit® RB3

greener alternative product characteristics

Design for Energy Efficiency
Learn more about the Principles of Green Chemistry.

sustainability

Greener Alternative Product

diam.

~3 mm

loss

≤5% loss on drying

diameter

~3 mm

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1 of 4

This Item
377712923853663
form

rod

form

granular

form

rod

form

powder

diam.

~3 mm

diam.

~1 mm

diam.

~3 mm

diam.

-

grade

for gas purification

grade

for potable water processing

grade

-

grade

corresponds U.S. Food chemicals codex (3rd Ed.)

manufacturer/tradename

Norit® RB3

manufacturer/tradename

Norit® GAC 1240W

manufacturer/tradename

Norit® RBAA-3

manufacturer/tradename

Norit® SX ultra

loss

≤5% loss on drying

loss

≤5.0% loss on drying

loss

17-26% loss on drying

loss

≤10% loss on drying

Quality Level

200

Quality Level

200

Quality Level

100

Quality Level

200

General description

We are committed to bringing you Greener Alternative Products, which adhere to one or more of The 12 Principles of Greener Chemistry. This product has been enhanced for energy efficiency. Click here for more details.

Application

Activated Charcoal Norit® (Norit RB3) can be used in the separation of methane and nitrogen.[1] It can be incorporated with MIL-101 for the formation of metal-organic frameworks (MOFs) for potential usage in hydrogen storage.[1][2]

Legal Information

Norit is a registered trademark of Norit N.V.

Storage Class Code

11 - Combustible Solids

WGK

WGK 3

Flash Point(F)

Not applicable

Flash Point(C)

Not applicable


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Adsorption of carbon dioxide using impregnated activated carbon promoted by Zinc.
Somy A, et al.
International Journal of Greenhouse Gas Control, 3(3), 249-254 (2009)
Co-adsorption of n-butane/water vapour mixtures on activated carbon fibre-based monoliths.
Marban G and Fuertes AB
Carbon, 42(1), 71-81 (2004)
Doping activated carbon incorporated composite MIL-101 using lithium: impact on hydrogen uptake
Prabhakaran PK and Deschamps J
Journal of Material Chemistry A, 3(13), 7014-7021 (2015)
Adsorption equilibria and kinetics of methane+ nitrogen mixtures on the activated carbon Norit RB3
Rufford TE, et al.
Industrial & Engineering Chemistry Research, 52(39), 14270-14281 (2013)
Adsorption of volatile organic compounds by means of activated carbon fibre-based monoliths.
Fuertes AB, et al.
Carbon, 41(1), 87-96 (2003)

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