BS ISO 23832:2021
Plastics. Test methods for determination of degradation rate and disintegration degree of plastic materials exposed to marine environmental matrices under laboratory conditions
Standard number: | BS ISO 23832:2021 |
Pages: | 24 |
Released: | 2021-06-16 |
ISBN: | 978 0 539 04413 3 |
Status: | Standard |
BS ISO 23832:2021 - Plastics Degradation and Disintegration Test Methods
Discover the essential standard for evaluating the environmental impact of plastic materials with the BS ISO 23832:2021. This comprehensive document provides detailed test methods for determining the degradation rate and disintegration degree of plastic materials when exposed to marine environmental matrices under controlled laboratory conditions.
Overview
As the world becomes increasingly aware of the environmental challenges posed by plastic waste, the need for reliable and standardized testing methods has never been more critical. The BS ISO 23832:2021 standard is a pivotal resource for researchers, environmental scientists, and manufacturers who are committed to understanding and mitigating the impact of plastics in marine environments.
Key Features
- Standard Number: BS ISO 23832:2021
- Pages: 24
- Release Date: June 16, 2021
- ISBN: 978 0 539 04413 3
- Status: Standard
Why Choose BS ISO 23832:2021?
This standard is indispensable for those involved in the development and testing of plastic materials. It provides a rigorous framework for assessing how plastics degrade and disintegrate in marine environments, which is crucial for developing more sustainable materials and reducing the ecological footprint of plastic products.
Comprehensive Testing Methods
The document outlines a series of laboratory-based test methods designed to simulate marine conditions. These methods are essential for accurately measuring the degradation rate and disintegration degree of various plastic materials, providing valuable data that can inform product development and environmental impact assessments.
Global Relevance
With the increasing global focus on environmental sustainability, the BS ISO 23832:2021 standard is recognized internationally as a benchmark for plastic degradation testing. It aligns with global efforts to reduce plastic pollution and supports the development of materials that are less harmful to marine ecosystems.
Support for Innovation
By adhering to the guidelines set forth in this standard, manufacturers and researchers can drive innovation in the field of sustainable plastics. The insights gained from these tests can lead to the creation of new materials that break down more efficiently in marine environments, contributing to a cleaner and healthier planet.
Who Should Use This Standard?
The BS ISO 23832:2021 is an invaluable tool for a wide range of professionals, including:
- Environmental Scientists
- Material Researchers
- Product Developers
- Quality Assurance Specialists
- Regulatory Bodies
Conclusion
In a world where environmental responsibility is paramount, the BS ISO 23832:2021 standard provides the necessary tools to assess and improve the sustainability of plastic materials. By implementing these test methods, stakeholders can make informed decisions that contribute to the reduction of plastic pollution in marine environments.
Embrace the future of sustainable materials with the BS ISO 23832:2021 and be part of the solution to one of the most pressing environmental challenges of our time.
BS ISO 23832:2021
This standard BS ISO 23832:2021 Plastics. Test methods for determination of degradation rate and disintegration degree of plastic materials exposed to marine environmental matrices under laboratory conditions is classified in these ICS categories:
- 83.080.01 Plastics in general
This document specifies test methods for the measurement of the physical degradation of samples made with plastics materials when exposed to marine environmental matrices under aerobic conditions at laboratory scale.
This document is not suitable for the assessment of degradation caused by heat (thermo-degradation) or light exposure (photo-degradation).