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Using Generative Art to Convey Past and Future Climate Transitions
Published on: March 31, 2023
Human-induced climate change and population aging scenarios will amplify the heatwave-related mortality burden in
Jinjian Chen1, Maigeng Zhou2, Qihong Deng3
1School of Public Health, Guangzhou Medical University, Guangzhou 511436, China.
Abstract:
Previous projections of heatwave-related mortality in China have largely overlooked the influences of human activities and population aging, despite the country's rapid urbanization and significant socioeconomic transformations. Historical deaths were from 161 Disease Surveillance Points (DSPs) across various regions. Projected temperature data under four Shared Socioeconomic Pathway (SSP) scenarios was collected. Then, future heatwave-related deaths under natural and human-induced forcings scenarios were calculated using a three-stage modelling framework. Under a natural forcing scenario (SSP2-4.5-nat), heatwave frequency (total days) is projected to decline from 13 (65) in the 2010s to 11 (54) by the 2090s, while heatwave-related mortality declines modestly from 5,806 to 4,930. In stark contrast, the "worst-case" anthropogenic scenario (SSP5-8.5) shows dramatic escalation, with counts surging from 5 (34) to 53 (627), coupled with an 20.2-fold mortality surge from 2,782 (32.02%) to 56,259 (91.94%). Notably, the anthropogenic contribution to heatwave-related mortality is projected to surpass natural forcing impacts as early as the 2020s. Population aging would increase human-induced mortality 2.15- to 2.36-fold over decades. The elderly, females, the illiterate, and those in rural areas are at higher risk. This study evaluates contributions of anthropogenic activities and aging, underscoring the urgent need for tailored climate mitigation and adaptation strategies.
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