BS ISO 17168-1:2025
Fine ceramics (advanced ceramics, advanced technical ceramics) — Test method for air-purification performance of semiconducting photocatalytic materials under indoor lighting environment Removal of nitric oxide
| Standard number: | BS ISO 17168-1:2025 |
| Pages: | 24 |
| Released: | 2025-11-11 |
| ISBN: | 978 0 539 31102 0 |
| Status: | Standard |
BS ISO 17168-1:2025: Fine Ceramics Air-Purification Standard
Introducing the BS ISO 17168-1:2025, a comprehensive standard that sets the benchmark for testing the air-purification performance of semiconducting photocatalytic materials under indoor lighting conditions. This standard is pivotal for industries and researchers focused on advanced ceramics, providing a structured methodology for evaluating the removal of nitric oxide, a common indoor pollutant.
Key Features of BS ISO 17168-1:2025
- Standard Number: BS ISO 17168-1:2025
- Pages: 24
- Release Date: November 11, 2025
- ISBN: 978 0 539 31102 0
- Status: Standard
Why Choose BS ISO 17168-1:2025?
The BS ISO 17168-1:2025 standard is essential for anyone involved in the development and application of advanced ceramics, particularly those focusing on environmental and air quality improvements. This standard provides a detailed test method for assessing the efficiency of photocatalytic materials in purifying air by removing nitric oxide, a harmful pollutant that can affect indoor air quality.
Comprehensive Testing Methodology
This standard outlines a rigorous testing procedure that ensures reliable and consistent results. By following the guidelines set forth in BS ISO 17168-1:2025, manufacturers and researchers can accurately measure the air-purification capabilities of their materials, ensuring they meet the highest standards of performance and safety.
Focus on Indoor Air Quality
With increasing concerns about indoor air pollution, the BS ISO 17168-1:2025 standard addresses a critical need for effective air-purification solutions. By focusing on the removal of nitric oxide, this standard helps improve indoor environments, contributing to healthier living and working spaces.
Applications of the Standard
The BS ISO 17168-1:2025 standard is applicable across various sectors, including:
- Construction and Building Materials: Ensuring that materials used in construction contribute to better indoor air quality.
- Automotive Industry: Developing advanced ceramics for vehicle interiors that help reduce air pollutants.
- Consumer Electronics: Integrating air-purification technologies into devices and appliances.
- Research and Development: Providing a framework for innovation in photocatalytic materials.
Benefits of Implementing BS ISO 17168-1:2025
Adopting the BS ISO 17168-1:2025 standard offers numerous benefits, including:
- Enhanced Product Performance: By adhering to this standard, products can achieve superior air-purification capabilities.
- Market Competitiveness: Products that meet this standard are more likely to gain consumer trust and preference.
- Regulatory Compliance: Ensures that products comply with international air quality standards and regulations.
- Environmental Impact: Contributes to reducing indoor air pollution, promoting a healthier environment.
Conclusion
The BS ISO 17168-1:2025 standard is a vital tool for advancing the field of fine ceramics and enhancing indoor air quality. By providing a clear and effective test method for the air-purification performance of semiconducting photocatalytic materials, this standard supports innovation and excellence in product development. Whether you are a manufacturer, researcher, or industry professional, implementing this standard can lead to significant improvements in product quality and environmental impact.
BS ISO 17168-1:2025
This standard BS ISO 17168-1:2025 Fine ceramics (advanced ceramics, advanced technical ceramics) — Test method for air-purification performance of semiconducting photocatalytic materials under indoor lighting environment is classified in these ICS categories:
- 81.060.30 Advanced ceramics
