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Homepage>BS Standards>75 PETROLEUM AND RELATED TECHNOLOGIES>75.080 Petroleum products in general>BS EN 15553:2021 Petroleum products and related materials. Determination of hydrocarbon types. Fluorescent indicator adsorption method
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BS EN 15553:2021 Petroleum products and related materials. Determination of hydrocarbon types. Fluorescent indicator adsorption method

BS EN 15553:2021

Petroleum products and related materials. Determination of hydrocarbon types. Fluorescent indicator adsorption method

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Standard number:BS EN 15553:2021
Pages:22
Released:2022-01-18
ISBN:978 0 539 16719 1
Status:Standard
BS EN 15553:2021 Petroleum products and related materials. Determination of hydrocarbon types. Fluorescent indicator adsorption method

BS EN 15553:2021 Petroleum products and related materials. Determination of hydrocarbon types. Fluorescent indicator adsorption method

Standard Number: BS EN 15553:2021

Pages: 22

Released: 2022-01-18

ISBN: 978 0 539 16719 1

Status: Standard

Overview

The BS EN 15553:2021 standard is an essential document for professionals in the petroleum industry, providing a comprehensive method for the determination of hydrocarbon types in petroleum products and related materials. This standard employs the Fluorescent Indicator Adsorption Method, a highly effective technique for accurate and reliable analysis.

Key Features

  • Comprehensive Coverage: Spanning 22 pages, this standard offers detailed guidelines and procedures to ensure precise determination of hydrocarbon types.
  • Latest Release: Published on January 18, 2022, it incorporates the most recent advancements and best practices in the field.
  • Unique Identifier: The standard is easily identifiable with its ISBN number 978 0 539 16719 1.
  • Industry Standard: Recognized as a standard, it is a trusted resource for industry professionals.

Why Choose BS EN 15553:2021?

Choosing the BS EN 15553:2021 standard ensures that you are utilizing a method that is both scientifically rigorous and industry-approved. The Fluorescent Indicator Adsorption Method is known for its precision and reliability, making it an invaluable tool for anyone involved in the analysis of petroleum products.

Benefits of the Fluorescent Indicator Adsorption Method

  • High Sensitivity: This method is highly sensitive, allowing for the detection of even trace amounts of hydrocarbons.
  • Accuracy: Provides accurate results, ensuring that your analyses are reliable and reproducible.
  • Efficiency: The method is efficient, saving time and resources while delivering high-quality results.

Applications

The BS EN 15553:2021 standard is applicable in various sectors within the petroleum industry, including:

  • Quality Control: Ensuring the quality and consistency of petroleum products.
  • Research and Development: Facilitating the development of new products and technologies.
  • Regulatory Compliance: Helping companies meet industry regulations and standards.

Detailed Content

The standard is meticulously structured to provide clear and concise instructions. It includes:

  • Introduction: An overview of the method and its significance.
  • Scope: Defines the range of applications and limitations of the method.
  • Normative References: Lists other standards and documents referenced in the text.
  • Terms and Definitions: Clarifies the terminology used in the standard.
  • Principle: Describes the fundamental principles behind the Fluorescent Indicator Adsorption Method.
  • Reagents and Materials: Specifies the chemicals and materials required for the method.
  • Apparatus: Details the equipment needed to perform the analysis.
  • Procedure: Step-by-step instructions for conducting the analysis.
  • Calculation and Expression of Results: Guidelines for interpreting and presenting the data.
  • Precision and Bias: Information on the accuracy and reliability of the method.
  • Annexes: Additional information and examples to aid in the application of the standard.

Who Should Use This Standard?

The BS EN 15553:2021 standard is designed for a wide range of professionals, including:

  • Laboratory Technicians: Conducting routine analyses of petroleum products.
  • Quality Assurance Managers: Overseeing the quality control processes within their organizations.
  • Researchers: Engaged in the study and development of new petroleum products and technologies.
  • Regulatory Compliance Officers: Ensuring that their companies adhere to industry standards and regulations.

Conclusion

The BS EN 15553:2021 standard is an indispensable resource for anyone involved in the analysis of petroleum products. Its detailed guidelines and procedures ensure accurate and reliable determination of hydrocarbon types, making it a valuable tool for quality control, research, and regulatory compliance. By adopting this standard, you can be confident that you are using a method that is both scientifically sound and industry-approved.

DESCRIPTION

BS EN 15553:2021


This standard BS EN 15553:2021 Petroleum products and related materials. Determination of hydrocarbon types. Fluorescent indicator adsorption method is classified in these ICS categories:
  • 75.080 Petroleum products in general
This document specifies a fluorescent indicator adsorption method for the determination of hydrocarbon types over the concentration ranges from 5 % (V/V) to 99 % (V/V) aromatic hydrocarbons, 0,3 % (V/V) to 55 % (V/V) olefins, and 1 % (V/V) to 95 % (V/V) saturated hydrocarbons in petroleum fractions that distil below 315 °C. This method can apply to concentrations outside these ranges, but the precision has not been determined. When samples containing oxygenated blending components are analysed, the hydrocarbon type results can be reported on an oxygenate-free basis or, when the oxygenate content is known, the results can be corrected to a total-sample basis. This test method is applicable to full boiling range products. Cooperative data have established that the precision statement does not apply to petroleum fractions with narrow boiling ranges near the 315 °C limit. Such samples are not eluted properly, and results are erratic. It does not apply to samples containing dark-coloured components that interfere with reading the chromatographic bands that cannot be analysed. NOTE 1 The oxygenated blending components methanol, ethanol, tert-butyl methyl ether (MTBE), methyl tert-pentyl ether (TAME) and tert-butyl ethyl ether (ETBE) do not interfere with the determination of hydrocarbon types at concentrations normally found in commercial petroleum blends. These oxygenated compounds are not detected since they elute with the alcohol desorbent. The effects of other oxygenated compounds are individually verified. NOTE 2 For the purposes of this document, the terms “% (m/m)” and “% (V/V)” are used to represent respectively the mass fraction and the volume fraction. 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 the user of this document to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.