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>BSI Standards >13 ENVIRONMENT. HEALTH PROTECTION. SAFETY>13.300 Protection against dangerous goods>BS EN ISO 17508:2025 Packaging. Transport packaging for dangerous goods. Compatibility testing of polyethylene, fluorinated polyethylene and co-extruded plastic
immediate downloadReleased: 2025-10-23
BS EN ISO 17508:2025 Packaging. Transport packaging for dangerous goods. Compatibility testing of polyethylene, fluorinated polyethylene and co-extruded plastic

BS EN ISO 17508:2025

Packaging. Transport packaging for dangerous goods. Compatibility testing of polyethylene, fluorinated polyethylene and co-extruded plastic

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Standard number:BS EN ISO 17508:2025
Pages:20
Released:2025-10-23
ISBN:978 0 539 23279 0
Status:Standard
BS EN ISO 17508:2025 - Transport Packaging for Dangerous Goods

BS EN ISO 17508:2025 - Transport Packaging for Dangerous Goods

Ensure the safety and compliance of your transport packaging with the latest standard, BS EN ISO 17508:2025. This essential document provides comprehensive guidelines for the compatibility testing of polyethylene, fluorinated polyethylene, and co-extruded plastic materials used in the packaging of dangerous goods.

Overview

Released on October 23, 2025, this standard is a critical resource for manufacturers, suppliers, and regulatory bodies involved in the packaging and transportation of hazardous materials. With a total of 20 pages, it offers detailed procedures and criteria to ensure that packaging materials meet the necessary safety and performance requirements.

Key Features

  • Standard Number: BS EN ISO 17508:2025
  • ISBN: 978 0 539 23279 0
  • Status: Standard

Why Choose BS EN ISO 17508:2025?

In the realm of transporting dangerous goods, safety is paramount. The BS EN ISO 17508:2025 standard is designed to help you achieve the highest levels of safety and compliance. Here’s why it’s indispensable:

1. Comprehensive Compatibility Testing

This standard provides a thorough framework for testing the compatibility of packaging materials with the substances they are intended to contain. By following these guidelines, you can ensure that your packaging will not react adversely with the contents, thereby preventing leaks, spills, or other hazardous incidents.

2. Material Versatility

Whether you are using polyethylene, fluorinated polyethylene, or co-extruded plastic, this standard covers all the bases. It provides specific testing methods tailored to each material type, ensuring that your packaging solutions are robust and reliable.

3. Up-to-Date Compliance

Stay ahead of the curve with the most current standards in the industry. Released in 2025, this document reflects the latest advancements and regulatory requirements, helping you maintain compliance with international safety standards.

4. Enhanced Safety Measures

By adhering to the guidelines set forth in BS EN ISO 17508:2025, you can significantly reduce the risk of accidents during the transportation of dangerous goods. This not only protects your business but also ensures the safety of those handling and transporting these materials.

Who Should Use This Standard?

This standard is ideal for:

  • Packaging manufacturers and designers
  • Logistics and transportation companies
  • Regulatory and compliance officers
  • Safety and quality assurance professionals

Conclusion

Investing in the BS EN ISO 17508:2025 standard is a proactive step towards ensuring the safety and compliance of your transport packaging for dangerous goods. With its detailed guidelines and comprehensive testing procedures, you can confidently design and implement packaging solutions that meet the highest safety standards.

Stay compliant, enhance safety, and protect your business with the BS EN ISO 17508:2025 standard. Equip yourself with the knowledge and tools necessary to navigate the complexities of packaging for hazardous materials.

DESCRIPTION

BS EN ISO 17508:2025


This standard BS EN ISO 17508:2025 Packaging. Transport packaging for dangerous goods. Compatibility testing of polyethylene, fluorinated polyethylene and co-extruded plastic is classified in these ICS categories:
  • 55.020 Packaging and distribution of goods in general
  • 13.300 Protection against dangerous goods
This document specifies test methods for the determination of the chemical compatibility of packaging/ IBC made from polyethylene (PE), fluorinated polyethylene and co-extruded plastics. It covers the determination of adequate plastics compatibility against the following processes of deterioration: —     softening due to absorption (swelling); —     stress cracking; —     combinations thereof. This document is applicable to: —     drums and jerricans made from plastics; —     composite packaging (plastics) with inner receptacle made from plastics; —     rigid plastics IBCs (types 31H1 and 31H2); —     composite IBCs with rigid plastics inner receptacles (type 31HZ1); used for the transport of liquid dangerous goods. Proof of adequate plastics compatibility obtained using the test procedures specified in this document is only applicable to the above packaging and IBC types of the following materials and material specifications: —     packaging and IBCs made from PE; —     packaging and IBCs made from PE, whose internal surfaces are fluorinated; and —     packaging and IBCs which are coextrusion blow moulded and have walls with the following multilayer structure (from inside to outside): —    polyamide (PA), bonding agents, PE, or —    ethylene vinyl alcohol (EVOH), bonding agents, PE. Note              Packaging and IBCs made from PE and packaging and IBCs made from PE with fluorinated internal surfaces, deteriorate additionally due to molecular degradation reactions with the corresponding packaged substances. For this, the chemical compatibility can also be verified by the type tests described in ISO 13274:2013, Annex B, B.2.3, using the standard liquid nitric acid (55 %) or appropriate original packaged substances. Packaging made from Coex PE/PA and Coex PE/EVOH is not resistant to polar acid molecularly degrading substances such as nitric acid, with the result that a corresponding method is not considered for this process of deterioration in this document.