BS EN ISO 787-19:2020
General methods of test for pigments Determination of water-soluble nitrates (Salicylic acid method)
Standard number: | BS EN ISO 787-19:2020 |
Pages: | 12 |
Released: | 2020-05-06 |
ISBN: | 978 0 539 11958 9 |
Status: | Standard |
BS EN ISO 787-19:2020 - General Methods of Test for Pigments
Discover the essential standard for the determination of water-soluble nitrates in pigments with the BS EN ISO 787-19:2020. This comprehensive document provides a detailed methodology using the Salicylic acid method, ensuring accurate and reliable results for professionals in the field of pigment testing.
Overview
The BS EN ISO 787-19:2020 is a crucial standard for anyone involved in the testing and analysis of pigments. Released on May 6, 2020, this document outlines the general methods for determining water-soluble nitrates, a key component in assessing the quality and performance of pigments. With a total of 12 pages, this standard provides a concise yet thorough guide to the Salicylic acid method, a widely recognized technique in the industry.
Key Features
- Standard Number: BS EN ISO 787-19:2020
- Pages: 12
- Release Date: 2020-05-06
- ISBN: 978 0 539 11958 9
- Status: Standard
Why Choose BS EN ISO 787-19:2020?
In the world of pigment testing, precision and accuracy are paramount. The BS EN ISO 787-19:2020 standard is designed to meet these demands by providing a reliable method for the determination of water-soluble nitrates. This standard is essential for laboratories, manufacturers, and quality control professionals who require consistent and dependable results.
Benefits of the Salicylic Acid Method
The Salicylic acid method, as detailed in this standard, offers several advantages:
- Accuracy: Provides precise measurements of water-soluble nitrates, ensuring high-quality pigment analysis.
- Reliability: A well-established method that has been tested and validated in various applications.
- Efficiency: Streamlines the testing process, saving time and resources.
Applications
The BS EN ISO 787-19:2020 standard is applicable across a wide range of industries where pigments play a critical role. These include:
- Paints and Coatings: Ensures the quality and consistency of pigments used in paints and coatings.
- Plastics: Vital for the production of colored plastics, where pigment quality directly affects the final product.
- Textiles: Used in the dyeing process to achieve vibrant and long-lasting colors.
- Printing Inks: Guarantees the performance of pigments in various printing applications.
Who Should Use This Standard?
The BS EN ISO 787-19:2020 is an indispensable resource for:
- Laboratory Technicians: Provides a clear and concise methodology for accurate pigment testing.
- Quality Control Managers: Ensures compliance with industry standards and enhances product quality.
- Manufacturers: Helps maintain consistency and reliability in pigment production.
- Researchers: Offers a solid foundation for further studies and innovations in pigment technology.
Conclusion
The BS EN ISO 787-19:2020 standard is a vital tool for anyone involved in the testing and analysis of pigments. By providing a detailed methodology for the determination of water-soluble nitrates using the Salicylic acid method, this standard ensures accuracy, reliability, and efficiency in pigment testing. Whether you are a laboratory technician, quality control manager, manufacturer, or researcher, this standard is an essential addition to your professional toolkit.
Invest in the BS EN ISO 787-19:2020 today and ensure the highest standards of quality and performance in your pigment testing processes.
BS EN ISO 787-19:2020
This standard BS EN ISO 787-19:2020 General methods of test for pigments is classified in these ICS categories:
- 87.060.10 Pigments and extenders
This document specifies a general method of test for determining the water-soluble nitrates in a sample of pigments by a spectrophotometric method using salicylic acid.
ISO 787‑13 specifies a method for determining the water-soluble nitrates in a sample of pigments using Nessler`s method.