logo

Standards Manage Your Business

We Manage Your Standards

ASTM

ASTM E777 : 87(1996)

Standard Test Method for Carbon and Hydrogen in the Analysis Sample of Refuse-Derived Fuel

Standard Details

1.1 This test method covers the determination of total carbon and hydrogen in a sample of refuse-derived fuel (RDF). Both carbon and hydrogen are determined in one operation. This test method yields the total percentages of carbon and hydrogen in RDF as analyzed and the results include not only the carbon and hydrogen in the organic matter, but also the carbon present in mineral carbonates and the hydrogen present in the free moisture accompanying the analysis sample as well as hydrogen present as water of hydration.

Note 1-It is recognized that certain technical applications of the data derived from this test procedure may justify additional corrections. These corrections could involve compensation for the carbon present as carbonates, the hydrogen of free moisture accompanying the analysis sample, and the calculated hydrogen present as water of hydration.

1.2 This test method may be applicable to any waste material from which a laboratory analysis sample can be prepared.

1.3 This standard does not purport to address all of the safety problems, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use. For specific precautionary statements see Section 8.

General Information

Status : Historical
Standard Type: Main
Document No: ASTM E777 : 87(1996)
Document Year: 1987
Pages: 5
  • Section Volume:
  • 11.04 Volume 11.04 Waste Management
  • 11.04 Volume 11.04 Waste Management
  • 11.04 Volume 11.04 Waste Management

Life Cycle

Historical

Historical

Currently Viewing

Historical
ASTM E777 : 87(1996)
Knowledge Corner

Expand Your Knowledge and Unlock Your Learning Potential - Your One-Stop Source for Information!

© Copyright 2024 BSB Edge Private Limited.

Enquire now +