Wei Peng
Korea University · Environmental Science
About the Lab
Professor Wei Peng's research lab focuses on atmospheric chemistry, air quality modeling, and the environmental impacts of energy systems, with a particular emphasis on secondary aerosol formation, pollution mitigation strategies, and the interplay between air quality and climate change in East Asia. The lab investigates heterogeneous chemical mechanisms—such as the formation of organosulfur compounds like hydroxymethanesulfonate (HMS)—and evaluates the effectiveness of policy implementation in reducing emissions and improving public health. Using integrated assessment models, real-time measurements, and epidemiological data, the lab explores sustainable energy transitions, including renewable electricity transmission and electric vehicle adoption, to address both air pollution and climate change. Their work bridges atmospheric science, environmental policy, and systems modeling to support equitable and effective environmental decision-making.
Research Overview
Research Output Trend
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Selected Papers
15Abstract. The chemical mechanisms responsible for rapid sulfate production, an important driver of winter haze formation in northern China, remain unclear. Here, we propose a potentially important heterogeneous hydroxymethanesulfonate (HMS) chemical mechanism. Through analyzing field measurements with aerosol mass spectrometry, we show evidence for a possible significant existence in haze aerosols of organosulfur primarily as HMS, misidentified as sulfate in previous observations. We estimate th
Abstract. The real-time measurements of NH3 and trace gases were conducted, in conjunction with semi-continuous measurements of water-soluble ions in PM2.5 at a rural site in the North China Plain (NCP) from May to September 2013 in order to better understand chemical characteristics of ammonia and the impact of secondary ammonium aerosols on formation in the NCP. Extremely high NH3 and NH4+ concentrations were observed after a precipitation event within 7–10 days following urea application. Ele
The coal-dominated electricity system poses major challenges for India to tackle air pollution and climate change. Although the government has issued a series of clean air policies and low-carbon energy targets, a key barrier remains enforcement. Here, we quantify the importance of policy implementation in India's electricity sector using an integrated assessment method based on emissions scenarios, air quality simulations, and health impact assessments. We find that limited enforcement of air p
China is the world’s top carbon emitter and suffers from severe air pollution. It has recently made commitments to improve air quality and to peak its CO _2 emissions by 2030. We examine one strategy that can potentially address both issues—utilizing long-distance electricity transmission to bring renewable power to the polluted eastern provinces. Based on an integrated assessment using state-of-the-science atmospheric modeling and recent epidemiological evidence, we find that transmitting a hyb
Abstract Scaling up electric vehicles (EVs) provides an avenue to mitigate both carbon emissions and air pollution from road transport. The benefits of EV adoption for climate, air quality, and health have been widely documented. Yet, evidence on the distribution of these impacts has not been systematically reviewed, despite its central importance to ensure a just and equitable transition. Here, we perform a systematic review of recent EV studies that have examined the spatial distribution of th
Sustainability outcomes are influenced by the laws and configurations of natural and engineered systems as well as activities in socio-economic systems. An important subset of human activity is the creation and implementation of institutions, formal and informal rules shaping a wide range of human behavior. Understanding these rules and codifying them in computational models can provide important missing insights into why systems function the way they do (static) as well as the pace and structur
The Regional Greenhouse Gas Initiative (RGGI) is a cap-and-trade system targeting CO<sub>2</sub> emissions from the electricity sector in the northeastern United States. As a major power producer and carbon emitter, Pennsylvania plans to join RGGI in 2022, which will affect both the carbon market (i.e., RGGI) and the regional electricity market (i.e., PJM). Combining a PJM power system model with a reduced-form model of CO<sub>2</sub> emissions abatement from RGGI states that are not in PJM, we
Research Areas
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