返回
Projecting future minimum mortality temperature in China
DOI:10.1016/j.ecoenv.2024.117192.png)
摘要
En 中文
Minimum mortality temperature (MMT) increases with global warming due to climate adaptation, which is crucial for the precise assessment of mortality burden attributed to climate change. Nevertheless, forecasting future MMT poses a challenge given the unavailability of future mortality data. Here, we attempted to develop a novel approach to project future MMT. First, we estimated the MMT of 334 locations in China using a distributed lag nonlinear model. Then, meta regression models were applied to investigate the associations between MMT and several temperature variables(Most Frequent Temperature(MFT), average daily mean temperature, average daily minimum temperature, average daily maximum temperature and percentiles of temperature from 1st to 100th). A generalized linear regression model was employed to investigate whether significant differences existed in the relationships between MMT and temperature from the 1st to the 100th percentile. Finally, an optional indicator of MMT for projecting future values was identified. Our results indicated that temperatures in the 85th to 89th percentiles were closely associated with MMT, with the 88th percentile temperature serving as the most effective indicator, as confirmed by meta-regression models. Using the 88th percentile of temperature as alternative indicator of MMT, compared with the period of 2006-2015, the projected MMT in most districts and counties in China tended to rise under three representative concentration pathways (RCPs) in the 2030 s (2030-2039), 2060 s (2060-2069), and 2090 s (2090-2099). Our findings provide some insight to project future MMT for assessing mortality burden related to temperature change driven by global warming.
Keyword:
Temperature
Minimum mortality temperature
Adaptation
Projection
AI总结
对已上传原文的论文进行重点信息的提取,主要内容包括:简要概述、研究摘要、背景介绍、关键亮点、图文解析、展望与总结。
期刊
E
IF:
6.1
论文数:
1.8W
被引数:
6.9W
机构
引用论文
Projections of temperature-related excess mortality under climate change scenarios
LANCET PLANETARY HEALTH
IF21.6
Geographical Variations of the Minimum Mortality Temperature at a Global Scale: A Multicountry Study
The Inter-Sectoral Impact Model Intercomparison Project (ISI-MIP): Project framework部门间影响模型比对项目 (isi-mip): 项目框架

