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Homepage>BS Standards>75 PETROLEUM AND RELATED TECHNOLOGIES>75.160 Fuels>75.160.10 Solid fuels>BS ISO 1928:2020 Coal and coke. Determination of gross calorific value
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immediate downloadReleased: 2020-10-06
BS ISO 1928:2020 Coal and coke. Determination of gross calorific value

BS ISO 1928:2020

Coal and coke. Determination of gross calorific value

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Standard number:BS ISO 1928:2020
Pages:70
Released:2020-10-06
ISBN:978 0 539 03589 6
Status:Standard
BS ISO 1928:2020 - Coal and Coke: Determination of Gross Calorific Value

BS ISO 1928:2020 - Coal and Coke: Determination of Gross Calorific Value

Unlock the potential of your coal and coke analysis with the BS ISO 1928:2020 standard. This comprehensive document is an essential resource for professionals in the energy sector, providing a detailed methodology for determining the gross calorific value of coal and coke. Released on October 6, 2020, this standard is the latest in the field, ensuring you have the most up-to-date information and techniques at your disposal.

Key Features

  • Standard Number: BS ISO 1928:2020
  • Pages: 70
  • Release Date: 2020-10-06
  • ISBN: 978 0 539 03589 6
  • Status: Standard

Comprehensive Coverage

Spanning 70 pages, this standard provides an in-depth exploration of the methods used to determine the gross calorific value of coal and coke. It is meticulously crafted to guide you through the process, ensuring accuracy and reliability in your results. Whether you are conducting research, quality control, or compliance testing, this standard is an invaluable tool.

Why Gross Calorific Value Matters

The gross calorific value (GCV) is a critical parameter in the evaluation of coal and coke. It represents the total energy content of the fuel, which is essential for assessing its efficiency and economic value. Understanding the GCV allows industries to optimize their fuel usage, reduce costs, and minimize environmental impact. With the BS ISO 1928:2020 standard, you can ensure that your measurements are precise and consistent, providing a solid foundation for decision-making.

Who Should Use This Standard?

This standard is designed for a wide range of professionals, including:

  • Energy analysts and researchers
  • Quality control specialists in the coal and coke industries
  • Environmental scientists and engineers
  • Regulatory compliance officers
  • Academic institutions and laboratories

Stay Ahead with the Latest Standards

In a rapidly evolving industry, staying current with the latest standards is crucial. The BS ISO 1928:2020 standard reflects the latest advancements and best practices in the determination of gross calorific value. By integrating this standard into your operations, you can enhance the accuracy of your analyses and maintain a competitive edge in the market.

Enhance Your Analytical Capabilities

With the BS ISO 1928:2020 standard, you gain access to a wealth of knowledge and expertise. The document is structured to facilitate easy understanding and implementation, with clear instructions and guidelines. Whether you are new to the field or an experienced professional, this standard will enhance your analytical capabilities and support your efforts to achieve excellence in coal and coke analysis.

Conclusion

The BS ISO 1928:2020 standard is an indispensable resource for anyone involved in the analysis of coal and coke. Its comprehensive coverage, up-to-date methodologies, and focus on accuracy make it a must-have for professionals seeking to optimize their operations and ensure compliance with industry standards. Invest in this standard today and take the first step towards more efficient and reliable energy analysis.

DESCRIPTION

BS ISO 1928:2020


This standard BS ISO 1928:2020 Coal and coke. Determination of gross calorific value is classified in these ICS categories:
  • 75.160.10 Solid fuels

This document specifies a method for the determination of the gross calorific value of a solid mineral fuel at constant volume and at the reference temperature of 25 °C in a combustion vessel calorimeter calibrated by combustion of certified benzoic acid.

The result obtained is the gross calorific value of the analysis sample at constant volume with all the water of the combustion products as liquid water. In practice, fuel is burned at constant (atmospheric) pressure and the water is not condensed but is removed as vapour with the flue gases. Under these conditions, the operative heat of combustion is the net calorific value of the fuel at constant pressure. The net calorific value at constant volume can also be used; formulae are given for calculating both values.

General principles and procedures for the calibrations and the fuel tests are specified in the main text, whereas those pertaining to the use of a particular type of calorimetric instrument are described in Annexes A to C. Annex D contains checklists for performing calibration and fuel tests using specified types of calorimeters. Annex E gives examples illustrating some of the calculations. Annex F provides guidance around safe use, maintenance and testing of the calorimeter combustion vessel.

NOTE

Descriptors: solid fuels, coal, coke, tests, determination, calorific value, rules of calculation, calorimetry.