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Homepage>BS Standards>75 PETROLEUM AND RELATED TECHNOLOGIES>75.160 Fuels>75.160.20 Liquid fuels>BS EN 13016-1:2024 Liquid petroleum products. Vapour pressure Determination of air saturated vapour pressure (ASVP) and calculated dry vapour pressure equivalent (DVPE)
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immediate downloadReleased: 2024-06-21
BS EN 13016-1:2024 Liquid petroleum products. Vapour pressure Determination of air saturated vapour pressure (ASVP) and calculated dry vapour pressure equivalent (DVPE)

BS EN 13016-1:2024

Liquid petroleum products. Vapour pressure Determination of air saturated vapour pressure (ASVP) and calculated dry vapour pressure equivalent (DVPE)

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Standard number:BS EN 13016-1:2024
Pages:22
Released:2024-06-21
ISBN:978 0 539 24042 9
Status:Standard
BS EN 13016-1:2024 Liquid Petroleum Products Standard

BS EN 13016-1:2024 Liquid Petroleum Products - Vapour Pressure Determination

Standard Number: BS EN 13016-1:2024

Pages: 22

Released: 2024-06-21

ISBN: 978 0 539 24042 9

Status: Standard

Overview

The BS EN 13016-1:2024 standard is an essential document for professionals in the petroleum industry, providing comprehensive guidelines for the determination of vapour pressure in liquid petroleum products. This standard is crucial for ensuring the quality, safety, and performance of petroleum products, making it an indispensable resource for laboratories, refineries, and quality control departments.

Key Features

  • Air Saturated Vapour Pressure (ASVP): This standard outlines the precise methodology for determining the air saturated vapour pressure of liquid petroleum products. ASVP is a critical parameter that affects the handling, storage, and transportation of these products.
  • Dry Vapour Pressure Equivalent (DVPE): In addition to ASVP, the standard provides guidelines for calculating the dry vapour pressure equivalent. DVPE is an important factor in assessing the volatility and evaporation characteristics of petroleum products.
  • Comprehensive Coverage: With 22 pages of detailed instructions, this standard covers all aspects of vapour pressure determination, ensuring that users have access to the most accurate and reliable methods.
  • Up-to-Date Information: Released on June 21, 2024, this standard reflects the latest advancements and best practices in the field, ensuring that users are working with the most current information available.

Benefits

Implementing the BS EN 13016-1:2024 standard offers numerous benefits, including:

  • Enhanced Safety: By accurately determining vapour pressure, this standard helps prevent accidents and hazards associated with the handling and storage of volatile petroleum products.
  • Improved Quality Control: Consistent and reliable vapour pressure measurements ensure that petroleum products meet industry standards and regulatory requirements, enhancing product quality and performance.
  • Operational Efficiency: Clear and precise guidelines streamline the testing process, reducing the time and effort required for vapour pressure determination.
  • Regulatory Compliance: Adhering to this standard ensures compliance with national and international regulations, avoiding potential legal and financial penalties.

Who Should Use This Standard?

The BS EN 13016-1:2024 standard is designed for a wide range of professionals and organizations, including:

  • Petroleum Laboratories: Ensuring accurate and reliable vapour pressure measurements for research and development purposes.
  • Refineries: Maintaining product quality and safety during the refining process.
  • Quality Control Departments: Verifying that petroleum products meet industry standards and regulatory requirements.
  • Regulatory Bodies: Establishing and enforcing standards for the safe handling and storage of petroleum products.

Detailed Content

The BS EN 13016-1:2024 standard is meticulously structured to provide clear and concise instructions for vapour pressure determination. Key sections include:

  • Introduction: An overview of the importance of vapour pressure determination and the scope of the standard.
  • Definitions: Clear definitions of key terms and concepts related to vapour pressure.
  • Methodology: Step-by-step instructions for determining ASVP and calculating DVPE, including equipment requirements and procedural details.
  • Data Analysis: Guidelines for analyzing and interpreting vapour pressure data to ensure accuracy and reliability.
  • Appendices: Additional resources and references to support the implementation of the standard.

Why Choose BS EN 13016-1:2024?

Choosing the BS EN 13016-1:2024 standard means investing in the highest level of precision and reliability for vapour pressure determination. This standard is developed by experts in the field, ensuring that it meets the rigorous demands of the petroleum industry. By adhering to this standard, you can be confident that your vapour pressure measurements are accurate, consistent, and compliant with industry regulations.

Conclusion

The BS EN 13016-1:2024 standard is an invaluable resource for anyone involved in the production, testing, and regulation of liquid petroleum products. With its comprehensive guidelines and up-to-date information, this standard ensures that vapour pressure determination is conducted with the highest level of accuracy and reliability. Enhance your operations, improve safety, and ensure compliance with the BS EN 13016-1:2024 standard.

DESCRIPTION

BS EN 13016-1:2024


This standard BS EN 13016-1:2024 Liquid petroleum products. Vapour pressure is classified in these ICS categories:
  • 75.160.20 Liquid fuels
This document specifies a method for the determination of the air saturated vapour pressure (ASVP) (total vapour pressure), exerted in vacuo, by volatile, low viscosity petroleum products, components, ethanol blends up to 85 % (V/V), and feedstocks containing air. A dry vapour pressure equivalent (DVPE) can be calculated from the air containing vapour pressure (ASVP) measurement. The conditions used in the test described in this document are a vapour-to-liquid ratio of 4:1 and a test temperature of 37,8 °C. The equipment is not wetted with water during the test, and the method described is therefore suitable for testing samples with or without oxygenates; no account is taken of dissolved water in the sample. The method described is suitable for testing air saturated samples with a DVPE between 15,5 kPa and 106,0 kPa; vapour pressures outside this range can be measured, but the precision has not been determined. This document is applicable to fuels containing oxygenated compounds up to the limits stated in the relevant Council Directive 85/536/EEC [10], and for ethanol-fuel blends up to 85 % (V/V) ethanol. NOTE For the purposes of this document, the terms “% (m/m)” and “% (V/V)” are used to represent the mass and volume fractions, respectively. WARNING - The use of this document can involve hazardous materials, operations and equipment. This document does not purport to address all of the safety problems associated with its use. It is the responsibility of users of this document to take appropriate measures to ensure the safety and health of personnel prior to application of the document, and to determine the applicability of any other restrictions for this purpose.