TY - JOUR
T1 - Direct measurement of aerosol acidity
T2 - recent advances, challenges, and opportunities
AU - Tang, Mingjin
AU - Huang, Qishen
AU - Zheng, Guangjie
AU - Jia, Shiguo
AU - Song, Shaojie
AU - Zhang, Guohua
AU - Fu, Pingqing
AU - Zhu, Tong
N1 - Publisher Copyright:
© 2026 Science China Press
PY - 2026/6/30
Y1 - 2026/6/30
N2 - Acidity is a critical property of atmospheric aerosols, dictating their behaviors and environmental, climatic, and health impacts. However, direct measurement of aerosol acidity remains a formidable challenge. This article reviews recent advances in direct measurement of aerosol acidity, critically assessing the strengths, limitations, and operational ranges of available methods, as well as their applications to laboratory and ambient aerosols. We also re-assess the widely used phase partitioning method, arguing that it shares fundamental principles with direct measurement methods. We further highlight key unresolved challenges in aerosol acidity measurement, and explore potential strategies for addressing them in future research. Ultimately, this work aims to foster further debates and inspire future advances in understanding aerosol acidity, and more broadly acidity within confined micro- and nanoscale spaces, which are ubiquitous in both natural and engineered systems.
AB - Acidity is a critical property of atmospheric aerosols, dictating their behaviors and environmental, climatic, and health impacts. However, direct measurement of aerosol acidity remains a formidable challenge. This article reviews recent advances in direct measurement of aerosol acidity, critically assessing the strengths, limitations, and operational ranges of available methods, as well as their applications to laboratory and ambient aerosols. We also re-assess the widely used phase partitioning method, arguing that it shares fundamental principles with direct measurement methods. We further highlight key unresolved challenges in aerosol acidity measurement, and explore potential strategies for addressing them in future research. Ultimately, this work aims to foster further debates and inspire future advances in understanding aerosol acidity, and more broadly acidity within confined micro- and nanoscale spaces, which are ubiquitous in both natural and engineered systems.
KW - Aerosol acidity
KW - Direct measurement
KW - Micro- and nano-scale analysis
KW - Non-ideality
KW - Optical spectroscopy
KW - Probe molecules
UR - https://www.scopus.com/pages/publications/105040126625
U2 - 10.1016/j.scib.2026.05.011
DO - 10.1016/j.scib.2026.05.011
M3 - Review article
AN - SCOPUS:105040126625
SN - 2095-9273
VL - 71
SP - 3209
EP - 3220
JO - Science Bulletin
JF - Science Bulletin
IS - 12
ER -