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February 26, 2026ACS ES&T Air0 citations

Advancing EKMA Applications in Regional Air Quality Models: Insights into Interpretive Biases and Ozone Abatement Policies

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DLDingyuan LiangYCYiang ChenYHYeqi Huang

Key Points

  • The study aims to examine how EKMA-derived isopleths may misrepresent local emission control effectiveness in the Greater Bay Area.
  • Constructed city-specific EKMA diagrams using the WRF-CMAQ model by perturbing O3 precursor emissions.
  • Integrated source apportionment to quantify interpretive biases for city-specific controls.
  • Analyzed the efficacy of NOx reductions on O3 concentrations across multiple GBA cities.
  • Isopleths overestimate control efficacy by approximately 58.7% on average in GBA cities.
  • Biases persist up to 47.2% under stagnant meteorological conditions.
  • Short-term NOx reductions provide overall health benefits, despite increased O3 risks in VOC-limited regimes.

Abstract

The Empirical Kinetics Modeling Approach (EKMA) is a valuable tool for guiding ozone (O3) precursor emission controls, but O3 isopleths generated through regional emission perturbations in regional air quality models (RAQMs) may hide interpretive biases for local applications. Using the WRF-CMAQ model, this study constructs city-specific EKMA diagrams by perturbing O3 precursor emissions across the Greater Bay Area (GBA) of China and integrates source apportionment to quantify these biases. Results reveal that such isopleths overestimate city-specific control efficacy by approximately 58.7% on average across the GBA cities, based on monthly O3 metrics, with biases persisting as high as 47.2% even in relatively stagnant meteorological conditions. This indicates that local isopleths derived from regional emission perturbations inadequately represent the effectiveness of local emission controls. Reinterpreting the city-specific isopleths from a regional emission reduction perspective and applying multiple air quality indicators, we observe O3 concentration rebounds in numerous GBA cities due to inappropriate NOx reductions. Nonetheless, when shifting to a risk-based perspective, short-term NOx reductions achieve overall health benefits by offsetting greater NO2 risks, which outweigh the elevated O3-related risks in VOC-limited regimes. These insights provide evidence supporting governmental efforts to prioritize short-term, cost-effective NOx-focused controls, which deliver immediate health benefits, particularly in high-NOx urban cores. Additionally, this study offers positive incentives for adopting long-term attainment strategies with balanced NOx:AVOCs (anthropogenic VOCs) ratios of 1:1 or even 2:1 to achieve air pollution abatement and decarbonization in the GBA simultaneously. Our work highlights the imperative of aligning EKMA-RAQMs diagram interpretations with experimental designs and provides a novel perspective for holistically evaluating regional emission control policies.

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Cite This Study

Liang et al. (2026) studied this question.

synapsesocial.com/papers/699fe28895ddcd3a253e6554https://doi.org/10.1021/acsestair.5c00500
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