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Homepage>BS Standards>77 METALLURGY>77.140 Iron and steel products>77.140.75 Steel pipes and tubes for specific use>BS EN 17800:2022 Life cycle cost (LCC) and life cycle assessment (LCA) for CO2 emissions in ductile iron pipe systems
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immediate downloadReleased: 2023-01-10
BS EN 17800:2022 Life cycle cost (LCC) and life cycle assessment (LCA) for CO2 emissions in ductile iron pipe systems

BS EN 17800:2022

Life cycle cost (LCC) and life cycle assessment (LCA) for CO2 emissions in ductile iron pipe systems

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Standard number:BS EN 17800:2022
Pages:34
Released:2023-01-10
ISBN:978 0 539 19226 1
Status:Standard

BS EN 17800:2022 Life Cycle Cost (LCC) and Life Cycle Assessment (LCA) for CO2 Emissions in Ductile Iron Pipe Systems

Introducing the BS EN 17800:2022, a comprehensive guide that provides an in-depth understanding of the life cycle cost (LCC) and life cycle assessment (LCA) for CO2 emissions in ductile iron pipe systems. This standard is a must-have for professionals in the field, offering a detailed analysis of the environmental impact and cost-effectiveness of ductile iron pipe systems over their entire life cycle.

Key Features

The BS EN 17800:2022 standard is a 34-page document, packed with valuable information and insights. It was released on the 10th of January, 2023, and carries the ISBN number 978 0 539 19226 1. This standard is currently active and in use by professionals worldwide.

Why Choose BS EN 17800:2022?

Understanding the life cycle cost and assessment of CO2 emissions in ductile iron pipe systems is crucial for environmental sustainability and cost management. The BS EN 17800:2022 standard provides a comprehensive framework for evaluating these aspects, making it an invaluable resource for engineers, environmental scientists, and professionals in related fields.

With this standard, you can gain a thorough understanding of the environmental impact of ductile iron pipe systems, from production to disposal. It also provides a detailed analysis of the costs associated with these systems over their entire life cycle, helping you make informed decisions about their use and management.

Benefits of BS EN 17800:2022

The BS EN 17800:2022 standard offers numerous benefits. It provides a clear and comprehensive methodology for assessing the environmental impact and life cycle cost of ductile iron pipe systems. This can help organizations make more sustainable choices and manage costs more effectively.

Furthermore, this standard can contribute to improved environmental performance and cost-efficiency of ductile iron pipe systems. By understanding and applying the principles outlined in this standard, organizations can reduce their environmental footprint and achieve significant cost savings over the life cycle of their ductile iron pipe systems.

Conclusion

The BS EN 17800:2022 standard is a vital tool for anyone involved in the design, implementation, or management of ductile iron pipe systems. It provides a comprehensive understanding of the environmental impact and life cycle cost of these systems, helping organizations make more sustainable and cost-effective decisions.

Don't miss out on this invaluable resource. Get your copy of the BS EN 17800:2022 standard today and take a step towards a more sustainable and cost-effective future.

DESCRIPTION

BS EN 17800:2022


This standard BS EN 17800:2022 Life cycle cost (LCC) and life cycle assessment (LCA) for CO2 emissions in ductile iron pipe systems is classified in these ICS categories:
  • 91.140.60 Water supply systems
  • 77.140.75 Steel pipes and tubes for specific use
This document specifies the evaluation method of life cycle cost (LCC) and Life cycle assessment (LCA) of ductile iron pipes and fittings used for water applications and which are in compliance with EN 545. LCC evaluation is based on concepts and methods developed in ISO 15686 5. LCA evaluation is based on concepts and methods developed in ISO 15686 6, EN 15804:2012+A2:2019, EN ISO 14040 and EN ISO 14044. In this document, LCA is limited to the evaluation of environmental impact due to CO2 emissions associated with the consumption of natural resources or energy and waste disposal. The other categories of impacts are not in the scope of this document. Informative annexes are included in this document as a compilation of references, consensual factors, and scenarios with different DI pipelines.