BS ISO 15661:2020
Copper and nickel sulfide ores and concentrates. Determination of total chlorine content. Alkaline fusion and potentiometric titration method
Standard number: | BS ISO 15661:2020 |
Pages: | 22 |
Released: | 2020-09-23 |
ISBN: | 978 0 580 89567 8 |
Status: | Standard |
BS ISO 15661:2020 - Copper and Nickel Sulfide Ores and Concentrates
Discover the essential standard for determining the total chlorine content in copper and nickel sulfide ores and concentrates with the BS ISO 15661:2020. This comprehensive document provides a detailed methodology using the alkaline fusion and potentiometric titration method, ensuring precise and reliable results for your analytical needs.
Overview
The BS ISO 15661:2020 standard is a critical resource for professionals in the mining and metallurgical industries. Released on September 23, 2020, this standard outlines the procedures for accurately determining the total chlorine content in copper and nickel sulfide ores and concentrates. With its precise guidelines, it ensures that you can achieve consistent and accurate measurements, which are vital for quality control and compliance with industry regulations.
Key Features
- Standard Number: BS ISO 15661:2020
- Pages: 22
- Release Date: 2020-09-23
- ISBN: 978 0 580 89567 8
- Status: Standard
Methodology
The standard employs the alkaline fusion and potentiometric titration method, a robust and reliable technique for determining chlorine content. This method involves the fusion of the sample with an alkaline flux, followed by the titration of the resultant solution. The potentiometric titration provides high accuracy and sensitivity, making it an ideal choice for laboratories seeking dependable results.
Benefits
Implementing the BS ISO 15661:2020 standard in your operations offers numerous advantages:
- Accuracy: Achieve precise measurements of chlorine content, essential for maintaining product quality and meeting regulatory requirements.
- Reliability: The standardized method ensures consistent results across different batches and laboratories.
- Compliance: Stay aligned with international standards, enhancing your credibility and marketability in the global arena.
- Efficiency: Streamline your analytical processes with a clear and concise methodology, reducing time and resource expenditure.
Applications
This standard is indispensable for a variety of applications, including:
- Quality Control: Ensure the purity and quality of copper and nickel sulfide ores and concentrates.
- Regulatory Compliance: Meet industry standards and regulations for chlorine content in mineral products.
- Research and Development: Support innovative research projects with accurate and reliable data.
Why Choose BS ISO 15661:2020?
Choosing the BS ISO 15661:2020 standard means opting for a document that is meticulously crafted to meet the highest industry standards. It is a testament to quality and precision, providing you with the confidence that your analytical processes are backed by a globally recognized standard.
Conclusion
In the competitive field of mining and metallurgy, having access to reliable and accurate standards is crucial. The BS ISO 15661:2020 offers a comprehensive solution for determining the total chlorine content in copper and nickel sulfide ores and concentrates. With its detailed methodology and proven reliability, it is an invaluable tool for professionals seeking to enhance their analytical capabilities and ensure compliance with international standards.
Invest in the BS ISO 15661:2020 standard today and take a significant step towards achieving excellence in your analytical processes.
BS ISO 15661:2020
This standard BS ISO 15661:2020 Copper and nickel sulfide ores and concentrates. Determination of total chlorine content. Alkaline fusion and potentiometric titration method is classified in these ICS categories:
- 73.060.99 Other metalliferous minerals
This document specifies an analytical method for the determination of total chlorine content using alkaline fusion and potentiometric titration.
This method is applicable to copper and nickel sulfide ores and concentrates having chlorine content in the following ranges:
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Method 1: 80 µg/g to 4 300 µg/g
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Method 2: 70 µg/g to 4 300 µg/g