A Practical Approach for On-Road Measurements of Brake Wear Particles from a Light-Duty Vehicle

Author:

Andersson Jon1,Kramer Louisa J.1ORCID,Campbell Michael1,Marshall Ian1,Norris John1,Southgate Jason1,de Vries Simon1,Waite Gary1

Affiliation:

1. Ricardo UK Ltd., Shoreham Technical Centre, Shoreham-by-Sea BN43 5FG, UK

Abstract

Brake wear particles are generated through frictional contact between the brake disc or brake drum and the brake pads. Some of these particles may be released into the atmosphere, contributing to airborne fine particulate matter (PM2.5). In this study, an onboard system was developed and tested to measure brake wear particles emitted under real-world driving conditions. Brake wear particles were extracted from a fixed volume enclosure surrounding the pad and disc installed on the front wheel of a light-duty vehicle. Real-time data on size distribution, number concentration, PM2.5 mass, and the contribution of semi-volatiles were obtained via a suite of instruments sub-sampling from the constant volume sampler (CVS) dilution tunnel. Repeat measurements of brake particles were obtained from a 42 min bespoke drive cycle on a chassis dynamometer, from on-road tests in an urban area, and from braking events on a test track. The results showed that particle emissions coincided with braking events, with mass emissions around 1 mg/km/brake during on-road driving. Particle number emissions of low volatility particles were between 2 and 5 × 109 particles/km/brake. The highest emissions were observed under more aggressive braking. The project successfully developed a proof-of-principle measurement system for brake wear emissions from transient vehicle operation. The system shows good repeatability for stable particle metrics, such as non-volatile particle number (PN) from the solid particle counting system (SPCS), and allows for progression to a second phase of work where emissions differences between commercially available brake system components will be assessed.

Funder

Department of Transport, UK

Publisher

MDPI AG

Reference53 articles.

1. Non-Exhaust Vehicle Emissions of Particulate Matter and VOC from Road Traffic: A Review;Harrison;Atmos. Environ.,2021

2. High Resolution Vehicular PM10 Emissions over Megacity Delhi: Relative Contributions of Exhaust and Non-Exhaust Sources;Singh;Sci. Total Environ.,2020

3. Switzerland’s PM10 and PM2.5 Environmental Increments Show the Importance of Non-Exhaust Emissions;Grange;Atmos. Environ. X,2021

4. OCED (2020). Non-Exhaust Particulate Emissions from Road Transport: An Ignored Environmental Policy Challenge, OCED.

5. Bondorf, L., Köhler, L., Grein, T., Epple, F., Philipps, F., Aigner, M., and Schripp, T. (2023). Airborne Brake Wear Emissions from a Battery Electric Vehicle. Atmosphere, 14.

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