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   <subfield code="a">Particulate Matter Over A Seven Year Period in Urban and Rural Areas Within, Proximal and Far from Mining and Power Station Operations in Greece</subfield>
   <subfield code="h">[Elektronische Daten]</subfield>
   <subfield code="c">[A. Triantafyllou, S. Zoras, V. Evagelopoulos]</subfield>
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   <subfield code="a">Lignite mining operations and lignite-fired power stations result in major particulate pollution (fly ash and fugitive dust) problems in the areas surrounding these activities. The problem is more complicated, especially, for urban areas located not far from these activities, due to additional contribution from the urban pollution sources. Knowledge of the distribution of airborne particulate matter into size fraction has become an increasing area of focus when examining the effects of particulate pollution. On the other hand, airborne particle concentration measurements are useful in order to assess the air pollution levels based on national and international air quality standards. These measurements are also necessary for developing air pollutants control strategies or for evaluating the effectiveness of these strategies, especially, for long periods. In this study an attempt is made in order to investigate the particle size distribution of fly ash and fugitive dust in a heavy industrialized (mining and power stations operations) area with complex terrain in the northwestern part of Greece. Parallel total suspended particulates (TSP) and particulate matter with an aerodynamic diameter less than 10 μm (PM10) concentrations are analyzed. These measurements gathered from thirteen monitoring stations located in the greater area of interest. Spatial, temporal variation and trend are analyzed over the last seven years. Furthermore, the geographical variation of PM10 - TSP correlation and PM10/TSP ratio are investigated and compared to those in the literature. The analysis has indicated that a complex system of sources and meteorological conditions modulate the particulate pollution of the examined area.</subfield>
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   <subfield code="a">Springer Science + Business Media, Inc., 2006</subfield>
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   <subfield code="a">lignite</subfield>
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   <subfield code="a">particle size distribution</subfield>
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   <subfield code="a">PM10/TSP ratio</subfield>
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   <subfield code="a">power plant</subfield>
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   <subfield code="a">Triantafyllou</subfield>
   <subfield code="D">A.</subfield>
   <subfield code="u">Laboratory of Atmospheric Pollution and Environmental Physics, Department of Geotechnology and Environmental Engineering/Department of Pollution Control Technologies, Technological Education Institute (TEI) of West Macedonia, 50100, Kozani, Greece</subfield>
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   <subfield code="a">Zoras</subfield>
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   <subfield code="u">Laboratory of Atmospheric Pollution and Environmental Physics, Department of Geotechnology and Environmental Engineering/Department of Pollution Control Technologies, Technological Education Institute (TEI) of West Macedonia, 50100, Kozani, Greece</subfield>
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   <subfield code="a">Evagelopoulos</subfield>
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   <subfield code="u">Laboratory of Atmospheric Pollution and Environmental Physics, Department of Geotechnology and Environmental Engineering/Department of Pollution Control Technologies, Technological Education Institute (TEI) of West Macedonia, 50100, Kozani, Greece</subfield>
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   <subfield code="t">Environmental Monitoring and Assessment</subfield>
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