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The European PET Bottle Platform introduces the Quick Test – Accelerated Impact Test.Circularity (QT-AIT.Circularity), as an addition to Circularity Test Protocol

 

The European PET Bottle Platform (EPBP), the industry’s reference organisation for PET bottle circularity and design-for-recycling guidance, announces the addition of the Quick Test – Accelerated Impact Test.Circularity (QT-AIT.Circularity) to its Circularity Test Protocol.

The QT-AIT.Circularity provides the value chain with a fast, cost-effective method to simulate the impact of multiple recycling loops on recyclate quality, strengthening EPBP’s comprehensive toolkit for assessing PET bottle circularity during the early stages of packaging development.

 

A new tool supporting circularity assessment

QT-AIT.Circularity follows the established structure of all EPBP Quick Tests (QTs), which are designed to offer manufacturers an early and indicative view of a package’s recyclability and circularity profile.

 

Quick Tests are purposely engineered to be:

  • Easy to execute: Performed in standard in-house laboratory facilities with minimal specialised equipment.
  • Cost-effective: Requiring standard materials and limited time and resources.
  • Indicative: Providing preliminary insights that help packaging developers make informed design decisions before undertaking full EPBP evaluations.

 

As with all EPBP Quick Tests, QT-AIT. Circularity results are indicative only and are intended to be followed by comprehensive testing under EPBP’s formal protocols to validate recyclability or circularity performance.

 

Simulating impacts across multiple recycling loops

Circularity increasingly requires the PET value chain to understand how a packaging innovation behaves not just after a single recycling cycle, but after repeated loops. The QT-AIT.Circularity directly supports this need by simulating the effect of multiple mechanical recycling steps on PET recyclate quality. This allows stakeholders to gain early visibility on the long-term implications of design choices, particularly as recycled PET (rPET) content continues to grow under EU policies and associated legislation.

 

An additional resource supporting the industry’s transition

The QT-AIT.Circularity has been uploaded to the EPBP website and is now available for use by packaging developers, converters, and brand owners. It complements the broader EPBP Circularity Test Protocol, introduced as the next evolution beyond recyclability assessments, aligning with European regulatory expectations and supporting the shift toward circularity.

EPBP encourages innovators to begin integrating circularity considerations as early as the R&D phase. Early adoption of tools such as the QT-AIT.Circularity reduces the risk that packaging solutions validated under recyclability criteria may face challenges when reassessed for circularity in later stages.

 

Strengthening EPBP’s role in the PET value chain

For more than 18 years, EPBP has provided design-for-recycling guidelines and confidential evaluations of PET bottle innovations, ensuring the production of high-quality rPET and contributing to standardisation through its liaison role with the Technical Committee on Packaging within CEN.

 

The addition of the QT-AIT. Circularity reinforces EPBP’s commitment to supporting packaging circularity, recycling efficiency, and the evolution of PET bottle design in line with the realities of multi-loop recycling.

 

****ENDS****

Note to Editors

Current water challenges

We cannot deny the current water challenges our world is facing. We are experiencing increased water scarcity, with demands for safe, usable water exceeding supply in many areas, including in Europe. 

  • Freshwater use has been growing by about 1% per year since the 1980s and as water demand is expected to continue increasing at a similar rate until 2050, this will account for an increase of 20 to 30% above the current level of water use1.
  • This increase in water demand is leading to a reduction of renewable water resources of 24% per capita in Europe2
  • Around 30% of the European population lives in areas with permanent water stress and up to 70% live in areas with seasonal water stress during summer3.
  • Europe’s aquatic ecosystems are severely degraded: only 17% of protected river, lake, alluvial, and riparian habitats are in good conservation status and 90% of protected wetland habitats are classified as poor or bad4.
  • Globally, 85% of wetlands have been lost in the last 300 years, with more than 50% lost since 19905. This is particularly critical as wetlands play an important role in filtering water and removing pollutants, as well as providing shelter to wildlife and capturing carbon.

 

This situation entails severe risks for the world’s population. 

  • For the last decade, the World Economic Forum has placed water-related risks among the world’s top five in its annual Global Risks Report. 
  • Water-related disasters have also dominated the list of disasters over the past 50 years and account for 70% of all deaths related to natural disasters6.
  • Nearly 95% of infrastructure loss and damage reported between 2010 to 2019 were due to water-related disasters7
  • More frequent and intensive flooding has cost lives and livelihoods across Europe, while at the same time, more than 50% of the continent has, in recent years, been affected by extreme drought conditions, which also breed a range of negative social, economic and human outcomes8.

A situation driven by a combination of factors

The deterioration of the natural water cycle stems from a confluence of factors: growing urbanisation, growing populations, increased consumption, poor management, pollution, lack of or damaged infrastructure, and climate change.  

Agriculture was responsible for 59% of total freshwater use in Europe in 20179, while industrial and domestic uses are the main drivers of increasing water demand. Indeed, as economies industrialise, populations urbanise and water supply and sanitation systems expand. 

Additionally, rising temperatures and more extreme weather patterns are causing more droughts and flooding. Climate variability is also bringing more uncertainty as to the availability, predictability and geographical distribution of water. Water and climate change are inextricably linked. From unpredictable rainfall patterns to shrinking ice sheets, rising sea levels, floods and droughts – most impacts of climate change come down to water (UN Water).