Key Resources and Standards Supporting Safer 3D Printing
Chemical Insights conducts research on the indoor air quality and exposure impacts of 3D printing, including studies focused on VOC emissions, ultrafine particles, material performance, and real-world exposure scenarios.
We collaborate with researchers, industry stakeholders, and standards bodies to advance scientific understanding of 3D printing emissions and support the development of testing methods, certifications, and best practices that help improve indoor environmental quality. Some of our research and standards include the following:
ANSI/CAN/UL 2904
ANSI/CAN/UL 2904 is the standard method for testing and assessing particle and chemical emissions from 3D printers. This consensus-based standard was developed by UL and is essential in protecting indoor air quality. It specifies a systematic test method to characterize and quantify 3D printer emissions.
The standard sets scientifically-derived, performance-based criteria and provides a benchmark for manufacturers to qualify low-emitting 3D printers intended for non-industrial spaces like offices and classrooms. The test protocol mandates a detailed two-day procedure and methodologies for measuring ultrafine, fine, and coarse particles as well as VOCs and aldehydes.
UL 200B
Developed in collaboration with the Campus Safety, Health, and Environment Management Association (CSHEMA), this document provides indispensable guidance for campus safety professionals.
It details evidence-based recommendations for integrating safety into all phases of 3D printing – from purchasing and installation to operation and waste disposal – with a focus on material extrusion and vat photopolymerization systems.
When it comes to risk management, it outlines the steps necessary for building a risk management program using the hierarchy of controls. This helps institutions establish policies for safety and training.
Data Portal for 3D Printing and VOC Data
Chemical Insights’ data visualization tool provides access to original, peer-reviewed research findings.
- Interactive tool: The data portal allows users to analyze particle and VOC emission rates from material extrusion printers under various print conditions.
- Comparative analysis: Users can compare specific filament or printer combinations against the maximum allowable emission criteria defined in the ANSI/CAN/UL 2904 Standard.
Characterizing VOC Emissions from 3D Printing Resins
One of Chemical Insights’ strategic research initiatives centers around how to develop and validate a microchamber-based method to characterize, quantify, and compare VOC emissions from dental 3D printing resins under varying temperature conditions.