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Research

Research

My work sits at the intersection of satellite atmospheric composition, product evaluation, atmospheric chemistry, and chemical transport modeling.

Satellite product evaluation

Validation of GEMS glyoxal products over East Asia

Evaluated GEMS glyoxal products against TROPOMI, MAX-DOAS, and GEOS-Chem. To understand discrepancies between the satellite products, I examined selected retrieval steps, including differential slant column density, reference-area treatment, and a prior vertical profile effects.

Evaluation of GEMS glyoxal products over East Asia
Atmospheric chemistry

Urban diurnal glyoxal sources and sinks

Applied GEOS-Chem to investigate urban glyoxal diurnal variability and quantify key production and loss pathways, with particular attention to VOC oxidation, photolysis, and aerosol uptake.

Urban diurnal glyoxal sources and sinks
TROPOMI methane

Seasonal methane variability and rice cultivation

Analyzed TROPOMI methane observations over China using STL decomposition and K-means clustering to identify regional seasonal patterns associated with rice cultivation.

Research journey

From observations to processes

Bachelor's Research

Satellite observations
TROPOMI CH₄ · regridding · time-series analysis · clustering

Master's Research

Multi-platform product evaluation
GEMS · TROPOMI · MAX-DOAS · GEOS-Chem

Master's Research

Retrieval-process diagnostics
Understanding selected retrieval steps from the Level-2 product side

Master's Research

Atmospheric chemistry
GEOS-Chem · chemical budgets · source-sink analysis