Residual emissions may perpetuate community-scale inequalities in US air pollution
Остаточные выбросы могут увековечивать неравенство на уровне сообществ в загрязнении воздуха в США
2026-06-30
SCID: 54.1/n252huq3
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PM2.5 health impactscarbon dioxide removal (CDR)environmental justicenet-zero scenariosresidual emissions
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Abstract (AI)
Achieving net-zero targets reduces greenhouse gas emissions and their co-pollutants, thereby improving air quality; however, the magnitude and distribution of these improvements depend on the amount and location of residual emissions offset by carbon dioxide removal (CDR). Here we integrate a series of models and datasets to analyse community-scale particulate matter (PM2.5) impacts of different net-zero scenarios across the contiguous USA. These scenarios avoid many PM2.5-related deaths compared with a reference case, decreasing from around 200,000 to 160,000 and 130,000 deaths in 2050 in the high- and low-CDR scenarios, respectively. However, the low-CDR pathway leads to lower residual emissions and brings greater health improvements that disproportionately benefit non-white and low-income groups. Our results thus suggest that, in the absence of deliberate transition planning, large-scale CDR deployment could be at odds with the equitable distribution of climate mitigation-related health benefits in the USA. The scale of carbon dioxide removal (CDR) could determine the extent of co-emitted air pollutants in net-zero scenarios and potential health impacts. By linking a series of models and datasets, researchers find that low-CDR pathways lead to a more equitable distribution of health benefits across the USA.
Key Findings
1
Health improvements from low-CDR pathways disproportionately benefit non-white and low-income groups, improving equity of air quality outcomes.
2
Large-scale deployment of CDR could conflict with equitable distribution of climate mitigation health benefits unless transition planning addresses spatial distribution of residual emissions.
3
Low-CDR pathways produce lower residual emissions and larger overall health improvements than high-CDR pathways.
4
Net-zero scenarios reduce PM2.5-related deaths in the contiguous USA compared with a reference case, from around 200,000 to 160,000 (high-CDR) and 130,000 (low-CDR) in 2050.
5
The scale and location of residual emissions associated with CDR determine community-scale PM2.5 impacts and resulting health outcomes.
Research Object
Community-scale PM2.5 air pollution impacts under different net-zero and carbon dioxide removal (CDR) scenarios across the contiguous USA
Research Subject
How residual emissions and the scale/location of CDR alter the magnitude and distribution of PM2.5 reductions and associated health outcomes (mortality) across demographic groups, affecting equity of benefits
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2026-06-30
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