Benzene and toluene influence with or without nitrogen dioxide on inorganic pigments of works of art—Part II
Air pollution has a great impact on the social and economic aspects all over the world. In order to account the human interaction with the atmospheric environment, a suitable scientific basis is needed. That is why six physicochemical quantities have been determined in a previous work for each one h...
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Veröffentlicht in: | Atmospheric environment (1994) 2007-03, Vol.41 (9), p.2009-2018 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Air pollution has a great impact on the social and economic aspects all over the world. In order to account the human interaction with the atmospheric environment, a suitable scientific basis is needed.
That is why six physicochemical quantities have been determined in a previous work for each one heterogeneous system between organic volatile pollutants and oxide-pigments of works of art. This investigation is extended in order to determine experimentally five new ones. Thus, a more precise contribution to the elucidation of the mechanism of the deterioration of various works of art in museums is achieved. These physicochemical quantities are: (1) local adsorption energies, (2) local monolayer capacities, (3) local adsorption isotherms, (4) density probability function, and (5) pollutant concentration on the oxide-pigment at equilibrium. All these adsorption parameters mentioned above have been calculated as a function of experimental time for the systems: C
6H
6/TiO
2, C
6H
6/NO
2/TiO
2, C
6H
6/Cr
2O
3, C
6H
6/NO
2/Cr
2O
3, C
6H
5CH
3/TiO
2, C
6H
5CH
3/NO
2/TiO
2, C
6H
5CH
3/Cr
2O
3, C
6H
5CH
3/NO
2/Cr
2O
3, C
6H
6/PbO, C
6H
6/NO
2/PbO, C
6H
5CH
3/PbO, and C
6H
5CH
3/NO
2/PbO for the first time. Thus, in this work we shall stress the recent new aspect of Reversed Flow-(Inverse) Gas Chromatography (RF-GC or RF-IGC), i.e. the time-resolved chromatography related to the evaluation of some important adsorption parameters. Gas Chromatography is a promising meeting place of surface science and atmospheric chemistry. |
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ISSN: | 1352-2310 1873-2844 |
DOI: | 10.1016/j.atmosenv.2006.10.002 |