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Open AccessJournal ArticleDOI

Atmospheric composition change – global and regional air quality

Paul S. Monks, +68 more
- 01 Oct 2009 - 
- Vol. 43, Iss: 33, pp 5268-5350
TLDR
A review of the state of scientific understanding in relation to global and regional air quality is outlined in this article, in terms of emissions, processing and transport of trace gases and aerosols.
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This article is published in Atmospheric Environment.The article was published on 2009-10-01 and is currently open access. It has received 760 citations till now. The article focuses on the topics: Air quality index.

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Citations
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Increase in summer European Ozone amounts due to climate change

TL;DR: In this article, the authors used CHIMERE driven by meteorological fields from regional climate change simulations to investigate changes in summer ozone mixing ratios over Europe under increased greenhouse gas (GHG) forcing.
Journal ArticleDOI

The influence on the radioxenon background during the temporary suspension of operations of three major medical isotope production facilities in the Northern Hemisphere and during the start-up of another facility in the Southern Hemisphere

TL;DR: The hypothesis that medical isotope production facility are at present the major emitters of radioxenon to the atmosphere is confirmed: suspension of operations of these facilities indicates the scale of their normal contribution to the European radioXenon background, which decreased two to four fold.
Journal ArticleDOI

Soil organic carbon and nutrient losses resulted from spring dust emissions in Northern China

TL;DR: In this article, the spatial patterns and temporal dynamics of soil organic carbon (SOC) and nutrient losses in spring were estimated using a process-based dust emission model in Northern China during 1982-2011.
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Two decades of aerosol observations by AATSR, MISR, MODIS and MERRA-2 over India and Indian Ocean

TL;DR: In this article, the authors present the temporal variability of atmospheric aerosols over India and north Indian Ocean (NIO) for the past two decades (2000-2019) using MODIS on Terra, Multi-angle Imaging Spectroradiometer (MISR), Advanced Along Track Scanning Radiometer (AATSR) measurements from Envisat, and Modern-Era Retrospective analysis for Research and Applications version 2 (MERRA-2) reanalysis data are considered.
References
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Journal ArticleDOI

Climate change 2001: the scientific basis

TL;DR: In this article, the authors present an overview of the climate system and its dynamics, including observed climate variability and change, the carbon cycle, atmospheric chemistry and greenhouse gases, and their direct and indirect effects.
Journal ArticleDOI

Lung Cancer, Cardiopulmonary Mortality, and Long-term Exposure to Fine Particulate Air Pollution

TL;DR: Fine particulate and sulfur oxide--related pollution were associated with all-cause, lung cancer, and cardiopulmonary mortality and long-term exposure to combustion-related fine particulate air pollution is an important environmental risk factor for cardiopULmonary and lung cancer mortality.
Journal ArticleDOI

An Association between Air Pollution and Mortality in Six U.S. Cities

TL;DR: It is suggested that fine-particulate air pollution, or a more complex pollution mixture associated with fine particulate matter, contributes to excess mortality in certain U.S. cities.
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Frequently Asked Questions (12)
Q1. What are the contributions mentioned in the paper "Atmospheric composition change - global and regional air quality" ?

In this review the state of scientific understanding in relation to global and regional air quality is outlined. Trends in anthropogenic emissions both by region and globally are discussed as well as biomass burning emissions. New findings with respect to the transport of pollutants across the scales are discussed, in particular the move to quantify the impact of long-range transport on regional air quality. In particular, the policy challenges for concerted air quality and climate change policy ( co-benefit ) are discussed. 

Fossil fuel extraction and burning, energy production and consumption, industrial activities, transportation and landfills have also led to the emissions of large quantities of pollutants into the atmosphere. 

A step forward in deriving parameterizations of topographic venting for larger scale models is the quantification of the air mass exchanged vertically on a sub-grid scale. 

Particular areas where understanding is lacking include uncertainties in the mechanisms of the initial oxidation sequences to first generation products, and limitations in the available information on the subsequent chemistry of many of the classes of product known tobe generated. 

the main challenges in the estimation of uncertainties in emissions are related to the uncertainties in input data and in the development of methods for quantifying systematic errors. 

By overlaying the distribution of frequency of occurrence with land use changes, the amount of anthropogenic dust emissions can be evaluated. 

Over the last three decades, fire emissions estimates have developed from early inventories based on average fire return times and biomass estimates to detailed studies based on satellite data and sophisticated modelling predicting emissions with high spatial and temporal resolution. 

Uncertainty in emission scenario analysis at urban scale has also been tackled using Bayesian Monte-Carlo techniques (Deguillaume et al., 2008). 

The degradation of aromatic hydrocarbons, although usually only initiated significantly by reaction with OH, can proceed via a number of different routes to generate a large variety of structurally complex ring-retained and ring-opened products e.g. 

As dust has some unique spectral signatures (Dubovik et al., 2002), it is possible to separate pixels with freshly emitted dust from other aerosols. 

Technical challenges are also linked to fast hygroscopicity measurements for airborne applications in order to document high altitude hygroscopicity. 

Other questions also remain open, such as whether the concentrated emissions of gases, aerosols and aerosol precursors in the megacities have a substantial impact on regional and global climate.