Delays in reducing waterborne and water-related infectious diseases in China under climate change

被引:0
|
作者
Maggie Hodges
Jessica H. Belle
Elizabeth J. Carlton
Song Liang
Huazhong Li
Wei Luo
Matthew C. Freeman
Yang Liu
Yang Gao
Jeremy J. Hess
Justin V. Remais
机构
[1] Rollins School of Public Health,Department of Environmental Health
[2] Emory University,Department of Environmental and Occupational Health
[3] 1518 Clifton Rd NE Atlanta,Department of Environmental and Global Health
[4] Georgia 30322,Atmospheric Science and Global Change Division
[5] USA,undefined
[6] Emory University School of Medicine,undefined
[7] 1648 Pierce Dr NE Atlanta,undefined
[8] Georgia 30322,undefined
[9] USA,undefined
[10] Colorado School of Public Health,undefined
[11] University of Colorado,undefined
[12] 13001 E. 17th Place Aurora,undefined
[13] Colorado 80045,undefined
[14] USA,undefined
[15] College of Public Health and Health Professions,undefined
[16] and Emerging Pathogens Institute,undefined
[17] University of Florida,undefined
[18] 2055 Mowry Road Gainesville,undefined
[19] Florida 32610,undefined
[20] USA,undefined
[21] Office of Disease Control and Emergency Response,undefined
[22] China Center for Disease Control and Prevention,undefined
[23] 155 Changbai Road,undefined
[24] Changping District Beijing 102206,undefined
[25] China,undefined
[26] Research Center for Eco-Environmental Sciences,undefined
[27] Chinese Academy of Sciences,undefined
[28] 18 Shuangqing Road,undefined
[29] Haidian District Beijing 100085,undefined
[30] China,undefined
[31] Pacific Northwest National Laboratory,undefined
[32] 902 Battelle Boulevard Richland,undefined
[33] Washington 99352,undefined
[34] USA,undefined
来源
Nature Climate Change | 2014年 / 4卷
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摘要
Despite China’s rapid progress in improving water, sanitation and hygiene (WSH) access, in 2011, 471 million people lacked access to improved sanitation and 401 million to household piped water. As certain infectious diseases are sensitive to changes in both climate and WSH conditions, we projected impacts of climate change on WSH-attributable diseases in China in 2020 and 2030 by coupling estimates of the temperature sensitivity of diarrhoeal diseases and three vector-borne diseases, temperature projections from global climate models, WSH-infrastructure development scenarios, and projected demographic changes. By 2030, climate change is projected to delay China’s rapid progress towards reducing WSH-attributable infectious disease burden by 8–85 months. This development delay summarizes the adverse impact of climate change on WSH-attributable infectious diseases in China, and can be used in other settings where a significant health burden may accompany future changes in climate even as the total burden of disease falls owing to non-climate reasons.
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页码:1109 / 1115
页数:6
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