BS ISO 1656:2019
Rubber, raw natural, and rubber latex, natural. Determination of nitrogen content
Standard number: | BS ISO 1656:2019 |
Pages: | 30 |
Released: | 2019-08-07 |
ISBN: | 978 0 580 52331 1 |
Status: | Standard |
BS ISO 1656:2019 - Determination of Nitrogen Content in Natural Rubber
The BS ISO 1656:2019 standard is an essential document for professionals in the rubber industry, providing a comprehensive methodology for the determination of nitrogen content in raw natural rubber and natural rubber latex. Released on August 7, 2019, this standard is a critical tool for ensuring the quality and consistency of rubber products, which are integral to a wide range of applications across various industries.
Key Features of BS ISO 1656:2019
- Standard Number: BS ISO 1656:2019
- Pages: 30
- Release Date: 2019-08-07
- ISBN: 978 0 580 52331 1
- Status: Standard
Why Nitrogen Content Matters
Nitrogen content in natural rubber is a critical parameter that affects the physical properties and performance of rubber products. Accurate determination of nitrogen content is essential for:
- Quality Control: Ensuring that the rubber meets industry standards and specifications.
- Product Performance: Influencing the elasticity, strength, and durability of rubber products.
- Environmental Compliance: Meeting regulatory requirements for emissions and waste management.
Comprehensive Methodology
The BS ISO 1656:2019 standard provides a detailed methodology for the determination of nitrogen content, ensuring accuracy and repeatability in results. This standard is designed to be used by laboratories and quality control departments within the rubber industry, providing a reliable framework for testing and analysis.
Step-by-Step Procedures
The standard outlines step-by-step procedures for sample preparation, testing, and analysis, ensuring that users can achieve consistent and reliable results. It includes detailed instructions on the equipment and reagents required, as well as guidelines for interpreting results.
Internationally Recognized
As an ISO standard, BS ISO 1656:2019 is internationally recognized, making it a valuable resource for companies operating in global markets. Compliance with this standard demonstrates a commitment to quality and excellence, enhancing the reputation of your products and brand.
Applications Across Industries
The determination of nitrogen content is crucial for a wide range of industries that rely on natural rubber, including:
- Automotive: Ensuring the quality of tires, seals, and gaskets.
- Medical: Producing high-quality gloves, catheters, and other medical devices.
- Consumer Goods: Manufacturing durable and reliable rubber products for everyday use.
- Industrial: Creating robust components for machinery and equipment.
Enhance Your Quality Assurance Processes
By implementing the BS ISO 1656:2019 standard, companies can enhance their quality assurance processes, ensuring that their products meet the highest standards of quality and performance. This standard provides a reliable framework for testing and analysis, helping companies to identify and address potential issues before they impact product quality.
Conclusion
The BS ISO 1656:2019 standard is an invaluable resource for professionals in the rubber industry, providing a comprehensive methodology for the determination of nitrogen content in natural rubber. With its detailed procedures and internationally recognized status, this standard is essential for ensuring the quality and consistency of rubber products across a wide range of applications. By adopting this standard, companies can enhance their quality assurance processes, improve product performance, and demonstrate their commitment to excellence in the global market.
BS ISO 1656:2019
This standard BS ISO 1656:2019 Rubber, raw natural, and rubber latex, natural. Determination of nitrogen content is classified in these ICS categories:
- 83.040.10 Latex and raw rubber
This document specifies a macro-method and a semi-micro method for the determination of nitrogen in raw natural rubber and in natural rubber latex using variants of the Kjeldahl process.
The determination of nitrogen in natural rubber is usually carried out in order to arrive at an estimate of the protein content. Minor amounts of non-proteinous nitrogen containing constituents are also present. However, in the dry solids prepared from natural rubber latex, these materials can make a substantial contribution to the total nitrogen content.