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2. ENVIRONMENTAL ChEMISTRy & TEChNOLOGy 2.1. Lectures

2. ENVIRONMENTAL ChEMISTRy & TEChNOLOGy 2.1. Lectures

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Chem. Listy, 102, s265–s1311 (2008) Environmental Chemistry & Technology<br />

Conclusions<br />

The detailed analysis of dust fallout from the locality of<br />

Siderite, Ltd. factory revealed the extent of ecological load.<br />

In comparison with others localities, this area is the most<br />

influenced with heavy metals (iron, manganese and arsenic).<br />

This fact reflects the composition of siderite and applied technological<br />

treatments of siderite ore in the factory. Although<br />

relatively small territory was monitored, the significant differences<br />

are detected. There are many different factors, for<br />

example: meteorological, orographic, emissive, binding and<br />

particle sedimentation mechanisms with linkage to impurities<br />

and also others factors. Although the method of measuring<br />

of dust fallout is laborious with some mistakes, the relative<br />

evaluation of individual localities imission load provides<br />

applicable results.<br />

This work has been supported by Slovak grant agency VEGA<br />

project No. 2/0131/08.<br />

s312<br />

REFEREnCES<br />

1. Fišák J., Tesař M., řezáčová D., Eliáš V., Weignerová<br />

V., Fottová, D.: Atmos. Res., 64, 75 (2002).<br />

<strong>2.</strong> Baluchová B., Fejdi P., Bobro M.: Mineralia Slovaca,<br />

36, 357 (2004).<br />

3. Hančuľák J., Bobro M., Brehuv J., Slančo P.: Acta Montanistica<br />

Slovaca, 10, 246 (2005).<br />

4. Prášková L., Kubík, L., Malý, S.: Annual report 2005.<br />

Central institute for supervising and testing in agriculture.<br />

Brno 2006.<br />

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7th Intern. Conf. on the Biogeochem. of Trace Elements;<br />

Uppsala ’03, 15 -19 June 2003 (Gobran G., Lepp n.,<br />

ed.), p.19, Uppsala 2003.

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