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API TR 5C3: Calculating Performance Properties of Pipe Used as Casing or Tubing

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422

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API STD 671: Special Purpose Couplings for Petroleum, Chemical and Gas Industry Services

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502

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Technical Report API TBD-10: Chapter 10 Surface and Interfacial Tension

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API STD 671: Special Purpose Couplings for Petroleum, Chemical and Gas Industry Services: Errata 2

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450

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API RP 576: Inspection of Pressure-relieving Devices

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460

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API RP 591: Process Valve Qualification Procedure

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API RP 576: Inspection of Pressure-relieving Devices: Addendum 1

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ISO 14897:2023

ISO 14897:2023 Plastics – Polyols for use in the production of polyurethanes – Determination of water content

CDN $115.00

Description

This document specifies methods used to measure the water content of polyols employed as polyurethane raw materials.

Method A is a manual amperometric method which has been included to better define the principles of the Karl Fischer measurement. Amperometric methods are applicable to a wide range of polyols, including those which have enough colour to obscure a visual end-point. Method B includes an automated amperometric procedure and an automated coulometric procedure.

The coulometric procedure is an absolute method that does not require calibration and gives improved sensitivity compared with amperometric methods.

Edition

3

Published Date

2023-06-22

Status

PUBLISHED

Pages

10

Language Detail Icon

English

Format Secure Icon

Secure PDF

Abstract

This document specifies methods used to measure the water content of polyols employed as polyurethane raw materials.

Method A is a manual amperometric method which has been included to better define the principles of the Karl Fischer measurement. Amperometric methods are applicable to a wide range of polyols, including those which have enough colour to obscure a visual end-point. Method B includes an automated amperometric procedure and an automated coulometric procedure.

The coulometric procedure is an absolute method that does not require calibration and gives improved sensitivity compared with amperometric methods.

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