How stratospheric intrusion modulates the optimal mitigation pathway for ozone under sharp emission reductions.

Publication date: Jul 01, 2026

The prevention and control of ozone (O) pollution is a critical foundation for achieving the Chinese government’s strategy of coordinated improvement in pollution reduction and carbon mitigation. As the largest natural source of tropospheric O, stratospheric intrusion (SI) poses unforeseen additional challenges for O pollution control. The abrupt lockdowns during the COVID-19 pandemic provided a striking real-world scenario for studying the impact of SI on O control strategies amid dramatic emission reductions. Multiple diagnostic tools quantified the impact of SI in two representative Yunnan case studies from February 8-12, 2019 before the lockdown and the same period in 2020 during the lockdown. Compared to the pre-lockdown case, the SI event during the lockdown featured a deeper intrusion altitude, longer duration, and greater impact. Integrated process rate (IPR) analysis identified horizontal advection as the main contributor to tropospheric O enhancement. Critically, under substantial emission reduction scenarios, the optimal control strategy shifts with increasing SI contribution. Specifically, when the SI contribution exceeds 11. 2 ppb during the lockdown period, the focus of mitigation should be dynamically recalibrated from primarily targeting VOCs to prioritizing NO reductions. Our findings underscore the need to account for the additional O burden from SI and to dynamically adjust optimal mitigation pathways to counteract its negative impact.

Concepts Keywords
Chinese COVID-19 lockdown
Ecotoxicol Emission reduction path
February Ozone pollution
Foundation Stratospheric intrusion
Unforeseen

Semantics

Type Source Name
drug DRUGBANK Ozone
drug DRUGBANK Activated charcoal
disease MESH COVID-19 pandemic
disease MESH ppb

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