Camilla Geels’s research while affiliated with Aarhus University and other places

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Publications (5)


Association of long-term exposure to air pollution and greenness with incidence of chronic obstructive pulmonary disease in Northern Europe: The Life-GAP project
  • Article

May 2024

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25 Reads

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5 Citations

Environmental Research

Shanshan Xu

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Randi Jacobsen Bertelsen

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Total Nordic emissions for 1990–2014 (shipping excluded). CO, NMVOC, and NOx emissions (dashed lines) use the right y axis (which is 10 times the left axis).
Shipping emissions in the Nordic inventory for 1990–2014. NOx and SOx emissions (dashed lines) use the right y axis (which is 10 times the left axis). For spatial extent of the shipping emissions, see Fig. 3.
Total PM2.5 emissions in the Nordic countries in 2014 (except shipping around Iceland in 2010) in 1 km × 1 km resolution. The map also shows the spatial extent of shipping emissions in the Nordic inventory. The legend shows the colours at the exact emissions values, and colours between these values are interpolated.
Road transport (SNAP 7) PM2.5 emissions in the Nordic countries in 2014 in 1 km × 1 km resolution. The legend shows the colours at the exact emissions values, and colours between these values are interpolated.
Machinery and off-road (SNAP 8) PM2.5 emissions in the Nordic countries in 2014 in 1 km × 1 km resolution. The legend shows the colours at the exact emissions values, and colours between these values are interpolated.

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Air pollution emission inventory using national high-resolution spatial parameters for the Nordic countries and analysis of PM2.5 spatial distribution for road transport and machinery and off-road sectors
  • Article
  • Full-text available

March 2024

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104 Reads

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9 Citations

Air pollution is an important cause of adverse health effects, even in the Nordic countries, which have relatively good air quality. Modelling-based air quality assessment of the health impacts relies on reliable model estimates of ambient air pollution concentrations, which furthermore rely on good-quality spatially resolved emission data. While quantitative emission estimates are the cornerstone of good emission data, description of the spatial distribution of the emissions is especially important for local air quality modelling at high resolution. In this paper we present a new air pollution emission inventory for the Nordic countries with high-resolution spatial allocation (1 km × 1 km) covering the years 1990, 1995, 2000, 2005, 2010, 2012, and 2014. The inventory is available at 10.5281/zenodo.10571094 (Paunu et al., 2023). To study the impact of applying national data and methods to the spatial distribution of the emissions, we compared road transport and machinery and off-road sectors to CAMS-REGv4.2, which used a consistent spatial distribution method throughout Europe for each sector. Road transport is a sector with well-established proxies for spatial distribution, while for the machinery and off-road sector, the choice of proxies is not as straightforward as it includes a variety of different type of vehicles and machines operating in various environments. We found that CAMS-REGv4.2 was able to produce similar spatial patterns to our Nordic inventory for the selected sectors. However, the resolution of our Nordic inventory allows for more detailed impact assessment than CAMS-REGv4.2, which had a resolution of 0.1° × 0.05° (longitude–latitude, roughly 5.5 km × 3.5–6.5 km in the Nordic countries). The EMEP/EEA Guidebook chapter on spatial mapping of emissions has recommendations for the sectoral proxies. Based on our analysis we argue that the guidebook should have separate recommendations for proxies for several sub-categories of the machinery and off-road sectors, instead of including them within broader sectors. We suggest that land use data are the best starting point for proxies for many of the subsectors, and they can be combined with other suitable data to enhance the spatial distribution. For road transport, measured traffic flow data should be utilized where possible, to support modelled data in the proxies.

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Citations (2)


... However, some studies offer contrasting perspectives. For example, Xu et al. [48] analyzed Nordic respiratory health data and concluded that green spaces were not associated with COPD incidence. Additionally, research has demonstrated that the psychological benefits of green spaces, such as stress reduction and mood improvement, also contribute to better respiratory health [49]. ...

Reference:

Impact of Urban Green Infrastructure on the Respiratory Health of Older Adults in Shenyang, China
Association of long-term exposure to air pollution and greenness with incidence of chronic obstructive pulmonary disease in Northern Europe: The Life-GAP project
  • Citing Article
  • May 2024

Environmental Research

... The emissions were spatially distributed first to municipalities based on municipal fuel use data, and from there to grid with road network and traffic volume data. Detailed specifications of the inventory can be found in [42]. In this study, the FRES emissions were downscaled to daily resolution using traffic temporal profiles provided by Syke ( figure B5) and used as a reference dataset to compare with the 24 h summed emissions using our proposed framework (see section 2.8). ...

Air pollution emission inventory using national high-resolution spatial parameters for the Nordic countries and analysis of PM2.5 spatial distribution for road transport and machinery and off-road sectors