Active Climate, Earth & Environment Engineering

Transitioning from Vulnerable to Vibrant: Building a Disaster Response Framework that Addresses Climate-Health Threats to Communities

In plain English

AI plain-English summary

When a hurricane or flood hits the U.S. Gulf Coast, the air fills with toxic chemicals released from damaged refineries and industrial plants. This project tracks those airborne poisons in the communities that breathe them. The problem is that climate-driven extreme weather is becoming more frequent and severe in places like the Gulf Coast, where many of the nation’s largest refineries and chemical plants sit. Historical discriminatory policies have already concentrated pollution in vulnerable neighbourhoods, and disasters make it worse. Researchers lack a systematic way to measure how air toxics spike after these events and how those spikes affect people’s health. The team will identify the most vulnerable areas—those in the top 5–10% of vulnerability—and measure air toxics concentrations after climate-fueled disasters. They will then link that exposure data to health records from community health centres. Working with Historically Black Colleges and Universities, community organisations, and health centres, they will build a disaster response framework that puts health data at the centre. If successful, this framework could change how emergency services, local governments, and health providers prepare for and respond to the next climate-driven disaster—turning a chaotic, reactive scramble into a coordinated, data-driven system that protects the people most at risk.

View original technical description
Climate change impacts are exacerbating existing health and social inequities; this in turn increases the disproportionate health burden for vulnerable communities who already experience environmental injustice because of historical discriminatory policies. This disparity in health impacts continues to widen as extreme weather events driven by climate change become more frequent and severe in places like the U.S. Gulf Coast where many of the nation’s largest refineries and chemicals are produced. To address this crisis, we seek to analyze the impacts of air toxics exposures contributing to pervasive health disparities in vulnerable communities. We will characterize concentrations of air toxics after extreme climate-fueled weather disasters in areas identified as experiencing the top 5-10% highest vulnerability using a science-driven assessment of climate, environmental, and health data. We will evaluate air toxics exposure data with administrative health data from community health centers in vulnerable areas. Then, in an innovative partnership with Historically Black Colleges and Universities (HBCUs), community-based organizations (CBOs), non-profits, and community health centers (CHCs), we will use the health data to create and implement a community-centered climate disaster response framework.

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Researchers

Millie Baird (EPMC Awardee)

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Original classification

Discretionary Award

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