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Homepage>BS Standards>67 FOOD TECHNOLOGY>67.200 Edible oils and fats. Oilseeds>67.200.10 Animal and vegetable fats and oils>BS EN 14538:2025 Fat and oil derivatives. Fatty acid methyl ester (FAME). Determination of Ca, Mg, Na, K and P content by optical emission spectral analysis with inductively coupled plasma (ICP OES)
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immediate downloadReleased: 2025-01-15
BS EN 14538:2025 Fat and oil derivatives. Fatty acid methyl ester (FAME). Determination of Ca, Mg, Na, K and P content by optical emission spectral analysis with inductively coupled plasma (ICP OES)

BS EN 14538:2025

Fat and oil derivatives. Fatty acid methyl ester (FAME). Determination of Ca, Mg, Na, K and P content by optical emission spectral analysis with inductively coupled plasma (ICP OES)

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Standard number:BS EN 14538:2025
Pages:14
Released:2025-01-15
ISBN:978 0 539 29426 2
Status:Standard
BS EN 14538:2025 - Fat and Oil Derivatives Standard

BS EN 14538:2025 - Fat and Oil Derivatives: Fatty Acid Methyl Ester (FAME)

Welcome to the comprehensive guide on the BS EN 14538:2025 standard, a pivotal document for professionals in the field of fat and oil derivatives. This standard is essential for those involved in the analysis and quality control of fatty acid methyl esters (FAME), providing a detailed methodology for determining the content of critical elements such as calcium (Ca), magnesium (Mg), sodium (Na), potassium (K), and phosphorus (P) using optical emission spectral analysis with inductively coupled plasma (ICP OES).

Overview of BS EN 14538:2025

The BS EN 14538:2025 standard is a meticulously crafted document that outlines the procedures and requirements for accurately determining the elemental composition of FAME. Released on January 15, 2025, this standard is a must-have for laboratories and industries that require precise and reliable data on the elemental content of their products.

Key Features

  • Standard Number: BS EN 14538:2025
  • Pages: 14
  • ISBN: 978 0 539 29426 2
  • Status: Standard

Importance of Elemental Analysis in FAME

Fatty acid methyl esters (FAME) are crucial components in various industrial applications, including biodiesel production, food industry, and cosmetics. The presence of elements such as Ca, Mg, Na, K, and P can significantly affect the quality and performance of FAME. Therefore, accurate determination of these elements is vital for ensuring product quality and compliance with industry standards.

Why Choose Optical Emission Spectral Analysis with ICP OES?

Optical emission spectral analysis with inductively coupled plasma (ICP OES) is a state-of-the-art technique that offers several advantages for elemental analysis:

  • High Sensitivity: ICP OES provides high sensitivity, allowing for the detection of trace elements in complex matrices.
  • Wide Dynamic Range: This technique can measure a wide range of element concentrations, from trace levels to major components.
  • Multi-Element Capability: ICP OES can simultaneously analyze multiple elements, increasing efficiency and reducing analysis time.
  • Robustness: The technique is robust and reliable, making it suitable for routine analysis in various industrial settings.

Applications of BS EN 14538:2025

The BS EN 14538:2025 standard is applicable in a variety of sectors, including:

  • Biodiesel Production: Ensuring the quality and compliance of biodiesel with regulatory standards.
  • Food Industry: Monitoring the purity and safety of edible oils and fats.
  • Cosmetics: Analyzing the elemental composition of oils used in cosmetic formulations.
  • Research and Development: Supporting R&D activities in the development of new products and processes.

Structure of the Standard

The BS EN 14538:2025 standard is structured to provide clear and concise guidance on the analytical procedures. It includes:

  • Introduction: An overview of the scope and purpose of the standard.
  • Methodology: Detailed procedures for sample preparation, instrument calibration, and analysis.
  • Quality Control: Guidelines for ensuring the accuracy and precision of analytical results.
  • Data Interpretation: Instructions on how to interpret and report the results.

Benefits of Implementing BS EN 14538:2025

Implementing the BS EN 14538:2025 standard offers numerous benefits, including:

  • Enhanced Product Quality: By ensuring accurate determination of elemental content, manufacturers can improve the quality and consistency of their products.
  • Regulatory Compliance: Adhering to this standard helps companies meet regulatory requirements and industry standards.
  • Competitive Advantage: Companies that implement this standard can differentiate themselves by offering high-quality, compliant products.
  • Cost Efficiency: Accurate analysis reduces the risk of product recalls and rework, saving time and resources.

Conclusion

The BS EN 14538:2025 standard is an indispensable tool for professionals in the fat and oil derivatives industry. By providing a reliable method for determining the elemental content of FAME, this standard helps ensure product quality, safety, and compliance. Whether you are involved in biodiesel production, the food industry, or cosmetics, implementing this standard can significantly enhance your analytical capabilities and operational efficiency.

For those seeking to maintain the highest standards of quality and compliance, the BS EN 14538:2025 is an essential addition to your professional library. Embrace the precision and reliability of ICP OES analysis and elevate your product offerings to new heights.

DESCRIPTION

BS EN 14538:2025


This standard BS EN 14538:2025 Fat and oil derivatives. Fatty acid methyl ester (FAME). Determination of Ca, Mg, Na, K and P content by optical emission spectral analysis with inductively coupled plasma (ICP OES) is classified in these ICS categories:
  • 67.200.10 Animal and vegetable fats and oils
This document specifies a procedure for the direct determination of the content of the soap building elements Calcium (Ca), Magnesium (Mg), Sodium (Na) and Potassium (K) as well as Phosphorus (P) in fatty acid methyl esters (FAME) by ICP OES. The concentrations of each component or the combinations of some to which this method is applicable are given in Table 1. Table 1 - Scope ranges for each element Element Scope range mg/kg Ca 0,3 - 5,4 Mg 0,3 - 4,6 Na 0,4 - 5,0 K 0,6 - 5,3 P 1,0 - 5,0 Ca + Mg 0,5 - 9,4 Na + K 1,0 - 9,9 Ca + Mg + Na + K 1,4 - 19,3 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. NOTE For the purposes of this document, the term "% (V/V)" is used to represent the volume fraction, φ, of a material.