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Homepage>BS Standards>81 GLASS AND CERAMICS INDUSTRIES>81.060 Ceramics>81.060.30 Advanced ceramics>BS EN ISO 23739:2023 Fine ceramics (advanced ceramics, advanced technical ceramics). Methods for chemical analysis of zirconium oxide powders
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immediate downloadReleased: 2023-08-15
BS EN ISO 23739:2023 Fine ceramics (advanced ceramics, advanced technical ceramics). Methods for chemical analysis of zirconium oxide powders

BS EN ISO 23739:2023

Fine ceramics (advanced ceramics, advanced technical ceramics). Methods for chemical analysis of zirconium oxide powders

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Standard number:BS EN ISO 23739:2023
Pages:26
Released:2023-08-15
ISBN:978 0 539 25944 5
Status:Standard

BS EN ISO 23739:2023 Fine Ceramics (Advanced Ceramics, Advanced Technical Ceramics) - Methods for Chemical Analysis of Zirconium Oxide Powders

Introducing the BS EN ISO 23739:2023, a comprehensive guide to the methods for chemical analysis of zirconium oxide powders. This standard is an essential tool for professionals in the field of advanced ceramics and technical ceramics. It provides a detailed and systematic approach to the chemical analysis of zirconium oxide powders, ensuring accuracy and consistency in your work.

Released on 15th August 2023, this standard is the latest in the field, incorporating the most recent advancements and discoveries. With its 26 pages of in-depth information, it is a valuable resource for anyone working with zirconium oxide powders in the context of fine ceramics.

Key Features

The BS EN ISO 23739:2023 standard offers a wealth of features designed to enhance your understanding and application of chemical analysis methods for zirconium oxide powders. These include:

  • Standard Number: BS EN ISO 23739:2023. This unique identifier ensures you're getting the most current and authoritative standard in the field.
  • Pages: 26. Each page is packed with valuable information, providing a comprehensive guide to the chemical analysis of zirconium oxide powders.
  • Release Date: 2023-08-15. Stay up-to-date with the latest advancements and discoveries in the field.
  • ISBN: 978 0 539 25944 5. This unique identifier ensures you're getting the authentic standard, guaranteeing the quality and reliability of the information.
  • Name: Fine ceramics (advanced ceramics, advanced technical ceramics). Methods for chemical analysis of zirconium oxide powders. This descriptive name gives a clear indication of the standard's content and application.
  • Status: Corrigendum. This status indicates that the standard has been updated or corrected, ensuring you have the most accurate and reliable information.

Benefits of BS EN ISO 23739:2023

Utilizing the BS EN ISO 23739:2023 standard in your work with zirconium oxide powders offers numerous benefits. It ensures that your chemical analysis methods are in line with the latest industry standards, enhancing the accuracy and reliability of your results. It also provides a systematic approach to the analysis, making your work more efficient and effective.

Whether you're a professional in the field of advanced ceramics, a researcher, or a student, the BS EN ISO 23739:2023 standard is an invaluable resource. It provides the knowledge and guidance you need to excel in your work with zirconium oxide powders.

Get Your Copy Today

Don't miss out on this essential resource. Get your copy of the BS EN ISO 23739:2023 standard today and take your work with zirconium oxide powders to the next level.

DESCRIPTION

BS EN ISO 23739:2023


This standard BS EN ISO 23739:2023 Fine ceramics (advanced ceramics, advanced technical ceramics). Methods for chemical analysis of zirconium oxide powders is classified in these ICS categories:
  • 81.060.30 Advanced ceramics
This document specifies methods for the chemical analysis of zirconium oxide powders used as the raw material for fine ceramics. It stipulates the determination methods of the zirconium, aluminium, barium, calcium, cerium, cobalt, gadolinium, hafnium, iron, magnesium, potassium, silicon, sodium, strontium, titanium and yttrium contents in zirconium oxide powders for fine ceramics. The test sample is decomposed by acid pressure decomposition or alkali fusion. Contents of zirconium and yttrium are determined by using either a precipitation and gravimetric method or an inductively coupled plasma-optical emission spectrometry (ICP-OES) method. Contents of aluminium, barium, calcium, cerium, cobalt, gadolinium, hafnium, iron, magnesium, potassium, silicon, sodium, strontium and titanium are determined by using an ICP-OES method.