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ASTM UOP 703 : 2009

Current

Current

The latest, up-to-date edition.

Carbon on Catalysts by Induction Furnace Combustion and Infrared Detection

Available format(s)

Hardcopy , PDF

Language(s)

English

Published date

01-03-2009

€56.53
Excluding VAT

Defines a method for determining total carbon on catalysts and in other inorganic materials using a high temperature induction furnace analyzer.

DocumentType
Standard
Pages
7
PublisherName
American Society for Testing and Materials
Status
Current

This method is for determining total carbon on catalysts and in other inorganic materials using a high temperature induction furnace carbon analyzer. The method is generally applied over a range of 0.01 to 20 mass-% carbon; however, up to 100 mass-% carbon can be determined with appropriate calibration. On used catalyst, the carbon may be present as coke and/or hydrocarbons. If only the carbon present as coke is desired, hydrocarbons are removed by extraction prior to analysis, as described in UOP Method 602, Soxhlet Extraction of Catalysts. Analysis of catalysts containing light hydrocarbons can be problematic due to thermal loss of the hydrocarbons before controlled combustion occurs. For such materials, other methods, such as ASTM D5291, Instrumental Determination of Carbon, Hydrogen, and Nitrogen in Petroleum Products and Lubricants, should be utilized.

Analyzers that utilize combustion tube, rather than induction furnace technology may be used if it can be proven that they yield precision data at least as good as that listed herein.

ASTM UOP 896 : 1993 Platinum in Spent Catalyst
ASTM UOP 602 : 2015 Soxhlet Extraction of Catalyst

ASTM UOP 602 : 2015 Soxhlet Extraction of Catalyst
ASTM D 5291 : 2016 : REDLINE Standard Test Methods for Instrumental Determination of Carbon, Hydrogen, and Nitrogen in Petroleum Products and Lubricants
ASTM U 09 : 2013 Precision Statements in UOP Methods

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