BS EN ISO 22995:2019
Petroleum products. Determination of cloud point. Automated step-wise cooling method
Standard number: | BS EN ISO 22995:2019 |
Pages: | 16 |
Released: | 2019-06-11 |
ISBN: | 978 0 580 52051 8 |
Status: | Standard |
BS EN ISO 22995:2019 - Petroleum Products: Determination of Cloud Point
Discover the essential standard for the petroleum industry with the BS EN ISO 22995:2019. This comprehensive document provides a detailed methodology for determining the cloud point of petroleum products using an automated step-wise cooling method. Released on June 11, 2019, this standard is a crucial tool for professionals in the field, ensuring accuracy and consistency in testing procedures.
Key Features
- Standard Number: BS EN ISO 22995:2019
- Pages: 16
- Release Date: June 11, 2019
- ISBN: 978 0 580 52051 8
- Status: Standard
Understanding the Cloud Point
The cloud point of a petroleum product is a critical parameter that indicates the temperature at which wax crystals begin to form. This is particularly important for the performance of fuels and lubricants in cold conditions. The BS EN ISO 22995:2019 standard provides a precise and automated method to determine this point, ensuring that products meet the necessary specifications for safe and efficient use.
Automated Step-Wise Cooling Method
The automated step-wise cooling method outlined in this standard is designed to enhance the accuracy and repeatability of cloud point determinations. By automating the cooling process, this method reduces human error and provides consistent results across different testing environments. This is especially beneficial for laboratories and facilities that require high throughput and reliable data.
Why Choose BS EN ISO 22995:2019?
Adopting the BS EN ISO 22995:2019 standard offers numerous advantages:
- Consistency: Ensures uniformity in testing procedures across different laboratories and facilities.
- Accuracy: Provides precise measurements of the cloud point, critical for product performance in varying temperatures.
- Efficiency: The automated method saves time and reduces the potential for human error.
- Compliance: Aligns with international standards, facilitating global trade and cooperation.
Who Should Use This Standard?
The BS EN ISO 22995:2019 is indispensable for:
- Petroleum product manufacturers seeking to ensure product quality and performance.
- Testing laboratories that require standardized methods for cloud point determination.
- Regulatory bodies that oversee the compliance of petroleum products with industry standards.
- Researchers and engineers involved in the development and testing of fuels and lubricants.
Conclusion
In the ever-evolving petroleum industry, maintaining high standards of quality and performance is paramount. The BS EN ISO 22995:2019 standard is a vital resource for professionals seeking to ensure their products meet the rigorous demands of the market. By providing a reliable and automated method for determining the cloud point, this standard supports the development of superior petroleum products that perform optimally in all conditions.
Equip your laboratory or facility with the BS EN ISO 22995:2019 standard and stay ahead in the competitive petroleum industry. Ensure your products are tested with precision and consistency, meeting the highest standards of quality and performance.
BS EN ISO 22995:2019
This standard BS EN ISO 22995:2019 Petroleum products. Determination of cloud point. Automated step-wise cooling method is classified in these ICS categories:
- 75.080 Petroleum products in general
This document specifies a method to determine cloud point using a step-wise cooling technique that is executed by means of automated equipment types with optical detection mode.
The method is applicable to distillate fuels, fatty-acid methyl esters (FAME) and paraffinic diesel fuels, including blends thereof, as well as those containing flow-improvers or other additives, intended for use in diesel engines and domestic heating installations.
The method can be applied to other products such as vegetable oils or lubricants, but these kinds of products have not been evaluated during the interlaboratory study (ILS), no precision data are available.