Abstrakti
Introduction: Fuel poverty affects up to 35% of European homes, which represents a significant burden on society and healthcare systems. Draught proofing homes to prevent heat loss, improved glazing, insulation and heating (energy efficiency measures) can make more homes more affordable to heat. This has prompted significant investment in energy efficiency upgrades for around 40% of UK households to reduce the impact of fuel poverty. Despite some inconsistent evidence, household energy efficiency interventions can improve cardiovascular and respiratory health outcomes. However, the health benefits of these interventions have not been fully explored; this is the focus of this study. Methods: In this cross sectional ecological study, we conducted two sets of analyses at different spatial resolution to explore population data on housing energy efficiency measures and hospital admissions at the area-level (counts grouped over a 3-year period). Housing data were obtained from three data sets covering housing across England (Household Energy Efficiency Database), Energy Performance Certificate (EPC) and, in the South West of England, the Devon Home Analytics Portal. These databases provided data aggregated to Lower Area Super Output Area and postcode level (Home Analytics Portal only). These datasets provided measures of both state (e.g. EPC ratings) and intervention (e.g. number of boiler replacements), aggregated spatially and temporally to enable cross-sectional analyses with health outcome data. Hospital admissions for adult (over 18 years) asthma, chronic obstructive pulmonary disease (COPD) and cardiovascular disease (CVD) were obtained from the Hospital Episode Statistics database for the national (1st April 2011 to 31st March 2014) and Devon, South West of England (1st April 2014 to 31st March 2017) analyses. Descriptive statistics and regression models were used to describe the associations between small area household energy efficiency measures and hospital admissions. Three main analyses were undertaken to investigate the relationships between; 1) household energy efficiency improvements (i.e. improved glazing, insulation and boiler upgrades); 2) higher levels of energy efficiency ratings (measured by Energy Performance Certificate ratings); 3) energy efficiency improvements and ratings (i.e. physical improvements and rating assessed by the Standard Assessment Procedure) and hospital admissions. Results: In the national analyses, household energy performance certificate ratings ranged from 37 to 83 (mean 61.98; Standard Deviation 5.24). There were a total of 312,837 emergency admissions for asthma, 587,770 for COPD and 839,416 for CVD. While analyses for individual energy efficiency metrics (i.e. boiler upgrades, draught proofing, glazing, loft and wall insulation) were mixed; a unit increase in mean energy performance rating was associated with increases of around 0.5% in asthma and CVD admissions, and 1% higher COPD admission rates. Admission rates were also influenced by the type of dwelling, tenure status (e.g. home owner versus renting), living in a rural area, and minimum winter temperature. Discussion: Despite a range of limitations and some mixed and contrasting findings across the national and local analyses, there was some evidence that areas with more energy efficiency improvements resulted in higher admission rates for respiratory and cardiovascular diseases. This builds on existing evidence highlighting the complex relationships between health and housing. While energy efficiency measures can improve health outcomes (especially when targeting those with chronic respiratory illness), reduced household ventilation rates can impact indoor air quality for example and increase the risk of diseases such as asthma. Alternatively, these findings could be due to the ecological study design, reverse causality, or the non-detection of more vulnerable subpopulations, as well as the targeting of areas with poor housing stock, low income households, and the lack of “whole house approaches” when retrofitting the existing housing stock. Conclusion: To be sustainable, household energy efficiency policies and resulting interventions must account for whole house approaches (i.e. consideration of the whole house and occupant lifestyles). These must consider more alternative ‘greener’ and more sustainable measures, which are capable of accounting for variable lifestyles, as well as the need for adequate heating and ventilation. Larger natural experiments and more complex modelling are needed to further investigate the impact of ongoing dramatic changes in the housing stock and health. Study implications: This study supports the need for more holistic approaches to delivering healthier indoor environments, which must consider a dynamic and complex system with multiple interactions between a range of interrelated factors. These need to consider the drivers and pressures (e.g. quality of the built environment and resident behaviours) resulting in environmental exposures and adverse health outcomes.
| Alkuperäiskieli | Englanti |
|---|---|
| Artikkeli | 105164 |
| Julkaisu | Environment International |
| Vuosikerta | 133 |
| DOI - pysyväislinkit | |
| Tila | Julkaistu - 1 jouluk. 2019 |
| Julkaistu ulkoisesti | Kyllä |
| OKM-julkaisutyyppi | A1 Alkuperäisartikkeli tieteellisessä aikakauslehdessä |
Rahoitus
This study was supported and funded by the Eaga Charitable Trust , with additional support from the University of Exeter Medical School and the Public Health team in Cornwall Council . The research was also supported in part by the National Institute for Health Research Health Protection Research Unit (NIHR HPRU) in Environmental Change and Health at the London School of Hygiene and Tropical Medicine in partnership with Public Health England, and in collaboration with the University of Exeter , University College London, and the Met Office ( HPRU-2012-10016 ). Weather and air pollution data were provided via the MEDMI project: U.K. Medical Research Council (MRC) and the U.K. Natural Environment Council (NERC) for the MEDMI Project (MR/K019341/1). Additional funding was provided by the South West Academic Health Science Network [grant number SW AHSN G005 ] and the European Regional Development Fund [grant number SZ07660 ] for the SMARTLINE Project and the European Commission Horizon 2020 funded INHERIT project, coordinated by EuroHealthNet [grant number 667364 ]. Jonathon Taylor JT is funded by the Wellcome Trust ‘Our Planet, Our Health’ award Complex Urban Systems for Sustainability and Health ( 209387/Z/17/Z ). We would like to thank the Eaga Charitable Trust for funding this research project. This paper has been developed from the study report published on the Eaga CT website ( https://www.eagacharitabletrust.org/modelling-impact-fuel-poverty-energy-efficiency-health/ ). We particularly thank Dr. Naomi Brown and the Trustees for support and advice during the project. Hospital admissions data for the national study were obtained from Hospital Episode Statistics from the Health and Social Care Information Centre (now NHS Digital) under Data Sharing Agreement NIC-374485-Y2X9C, in association with the NIHR Health Protection Research Unit in Environmental Change & Health. Hospital Episode Statistics are copyright © 2017, re-used with the permission of the Health & Social Care Information Centre [NHS Digital]. All rights reserved. This work uses data provided by patients and collected by the NHS as part of their care and support. We thank Richard Merrifield for contributions to the study advisory group and Sean Lemon from the Energy Saving Trust who supplied valuable guidance on the use of EST data resources. Thanks also to Todd Chenore and colleagues at the NHS NEW Devon CCG for providing and supporting access to hospital admissions data, including granting KM and BW honorary contracts to permit use of CCG computer systems for in-house analysis of the data. The Cosy Devon partnership of Local Authorities, in particular Devon County Council, together with NHS NEW Devon CCG commissioned and funded the Energy Saving Trust Home Analytics v3 data set. The Energy Saving Trust also provided access to the Home Energy Efficiency Database, and supported analyses. We would also like to thank Cornwall Council and the Public Health team for their continued support through the delivery of this project. The views expressed are those of the authors and not necessarily those of the funders or the European Commission, the NHS, NIHR, the Department of Health or Public Health England, none of whom were involved in the research design, data analysis or interpretation of findings and are not responsible for any use that may be made of the information contained within. Appendix A
YK:n kestävän kehityksen tavoitteet
Tämä tuotos edistää seuraavia kestävän kehityksen tavoitteita:
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SDG 3 – Hyvä terveys ja hyvinvointi
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SDG 7 – Edullinen ja puhdas energia
!!ASJC Scopus subject areas
- Yleinen ympäristötiede
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