• There are no items in your cart

DIN EN ISO 16960:2015-02

Current
Current

The latest, up-to-date edition.

NATURAL GAS - DETERMINATION OF SULFUR COMPOUNDS - DETERMINATION OF TOTAL SULFUR BY OXIDATIVE MICROCOULOMETRY METHOD (ISO 16960:2014)
Available format(s)

Hardcopy , PDF

Language(s)

German, English

Published date

01-01-2015

National foreword
National Annex NA (informative) - Bibliography
Foreword
Introduction
1 Scope
2 Normative references
3 Test principle
4 Reagents
5 Apparatus
6 Test preparation
7 Test procedure
8 Calculation
9 Precision
Bibliography

Defines a method for the determination of total sulfur in the range from 1 mg/m[3] to 200 mg/m[3] in pipeline natural gas by oxidative microcoulometry.

DocumentType
Standard
Pages
13
PublisherName
German Institute for Standardisation (Deutsches Institut für Normung)
Status
Current

Standards Relationship
ISO 16960:2014 Identical
EN ISO 16960 : 2014 Identical

ISO 6144:2003 Gas analysis Preparation of calibration gas mixtures Static volumetric method
ISO 10715:1997 Natural gas — Sampling guidelines
DIN EN ISO 10715:2000-09 Natural gas - Sampling guidelines (ISO 10715:1997); English version of DIN EN ISO 10715
ISO 13443:1996 Natural gas Standard reference conditions
ISO 6142:2001 Gas analysis Preparation of calibration gas mixtures Gravimetric method
ISO 3696:1987 Water for analytical laboratory use — Specification and test methods
ASTM D 3246 : 2015 : REDLINE Standard Test Method for Sulfur in Petroleum Gas by Oxidative Microcoulometry
ISO 6146:1979 Gas analysis Preparation of calibration gas mixtures Manometric method
DIN ISO 3696:1991-06 WATER FOR ANALYTICAL LABORATORY USE - SPECIFICATION AND TEST METHODS

View more information
US$65.37
Excluding Tax where applicable

Access your standards online with a subscription

Features

  • Simple online access to standards, technical information and regulations.

  • Critical updates of standards and customisable alerts and notifications.

  • Multi-user online standards collection: secure, flexible and cost effective.