Article citationsMore>>
B. B. Hicks, “Differences in Wet and Dry Particle Deposition Parameters between North America and Europe,” In: S. D. Lee, T. Schneider, L. D. Grant and P. J. Verkerk, Eds., Aerosols: Research, Risk Assessment, and Control Strategies, Proceeding of the Second US-Dutch Symposium, Williamsburg VA, Chelsea, May 1985, Lewis Publishers, pp. 973-982.
has been cited by the following article:
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TITLE:
The Contribution of the GIS and the Principal Component Analysis in the Study of the Cement’s Dusts Impact on the Top Soils in the Central Part of the Oujda-Taourirt Corridor (Eastern Morocco)
AUTHORS:
Mohamed El Kharmouz, Mohamed Sbaa, Sanae Saadi
KEYWORDS:
Cement Dust; Soil; Spatial Distribution; Physico-Chemical Analysis; PCA
JOURNAL NAME:
Open Journal of Air Pollution,
Vol.2 No.4,
December
11,
2013
ABSTRACT: Cement dust pollution is one of the sources of atmospheric pollution. The main impacts of the cement activity to the environment are the broadcasts of dusts and gases. The objective of this study is to determine the effects of cement dust pollution on physico-chemical characteristics of the soil at the vicinity of the cement factory in Oujda-Taourirt corridor (Eastern Morocco) using Principal component analysis (PCA) and geographical information system (GIS). Forty one (41) surface soils (0 - 3 cm) were collected from the six rural townships surrounding the cement factory. The collected soil samples were analyzed for their chemical properties (CaO, Al2O3, Fe2O3, K2O, MgO, SO3 and SiO2) as well as their pH and Electric Conductivity. The results of the analysis showed that the dusts emitted by the cement plant are especially basic and contain a high free lime (43.03% CaO). The principal component analysis applied on the 41 superficial soil samples, allows deducting that the free lime and the sulfur oxide are the tracer elements of this form of pollution. Furthermore, the spatial projection of the factor scores of the principal component analysis using the geographical information system permits us to determine the spatial distribution of more polluted areas of soils as well as to estimate their impact at a zone of 2.5 km of beam around the factory.