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1.
Article in English | MEDLINE | ID: mdl-31195672

ABSTRACT

Coal-based energy production is the most utilized method of electricity production worldwide and releases the highest concentration of gaseous, particulate, and metallic pollutants. This article aims to systematically review the public health impact of coal-fired power plant emissions on children's health. PubMed, Web of Science, and Toxline databases were queried for the past 20 years. Inclusion criteria included original scientific articles with (a) coal-fired power plant exposure assessment, (b) at least one primary pediatric health outcome, and (c) assessment of potential sources of confounding and bias. Only morbidity and mortality studies were included; economic analysis and risk assessment studies without a primary health outcome were not included. Of 513 articles initially retrieved, 17 epidemiological articles were included in the final systematic review after screening and eligibility. The articles reviewed showed a statistically significant adverse effect on pediatric neurodevelopment; birth weight and pediatric respiratory morbidity was associated with exposure to coal-fired power plant emissions, primarily particulate matter and polyaromatic hydrocarbon exposure. There is a lack of consistency of exposure assessment and inadequate control of significant potential confounders such as social economic status. Future research should focus on improving exposure assessment models with an emphasis on source-apportionment and geographic information system methods to model power plant-specific emissions.


Subject(s)
Adolescent Health , Air Pollutants/adverse effects , Air Pollution/adverse effects , Child Health , Coal/adverse effects , Power Plants/statistics & numerical data , Adolescent , Child , Child, Preschool , Humans , Risk Assessment
2.
Int J Hyg Environ Health ; 222(2): 311-314, 2019 03.
Article in English | MEDLINE | ID: mdl-30503929

ABSTRACT

Health systems worldwide need to be adapted to cope with growing numbers of migrants and to climate-exacerbated morbidity. Heatwaves, water stress, desertification, flooding, and sea level rise are environmental stressors that increase morbidity, mortality, and poor mental health in Sub-Saharan Africa. While most migration is intra-African, climate change is also affecting migration patterns outside the continent. To tackle the health challenges induced by these events, such as infectious diseases and malnutrition, health care providers in Sub-Saharan Africa and in receiving countries in Europe must adapt their systems to provide appropriate health services to these communities. While health systems differ greatly across the global north and south, adaptation measures are similar and should be integrated. We present recommendations for adaptation of health systems to climate-related migration, including strengthening health systems, providing access to healthcare, culturally-appropriate services, policy-oriented research and training, and inter-sectoral collaboration.


Subject(s)
Climate , Health Services , Human Migration , Africa South of the Sahara/epidemiology , Europe/epidemiology , Humans , Morbidity
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