Photocatalytic decomposition of organophosphonates fluorophenols in irradiated titanium dioxide suspensions
Dimethyl methyl phosphonate (DMMP), diethyl methyl phosphonate (DEMP), and fluorophenols undergo rapid decomposition upon TiO2 catalyzed photooxidation in air saturated aqueous solution. The degradation rates of DMMP were determined over a range of temperatures, under solar and artificial irradiatio...
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ndltd-fiu.edu-oai-digitalcommons.fiu.edu-etd-23562018-01-05T15:28:34Z Photocatalytic decomposition of organophosphonates fluorophenols in irradiated titanium dioxide suspensions Aguilar, Martha Dimethyl methyl phosphonate (DMMP), diethyl methyl phosphonate (DEMP), and fluorophenols undergo rapid decomposition upon TiO2 catalyzed photooxidation in air saturated aqueous solution. The degradation rates of DMMP were determined over a range of temperatures, under solar and artificial irradiation with and without simultaneous sonication. Solar illumination is effective for the degradation and the use of low energy of sonication increases the rate of mineralization. The surface area and the type of TiO2 dramatically affect the photoactivity of the catalyst. A number of intermediate products are formed and ultimately oxidized to phosphate and carbon dioxide. Possible reaction mechanisms and pathways for DMMP and DEMP are proposed. The Langmuir- Hinshelwood kinetic parameters for the photocatalysis of fluorophenols suggest modestly different reactivity for each isomer. The adsorption constant is largest for the ortho isomer consistent with the adsorption onto TiO2 through both hydroxyl and fluoride groups to form a chelated type structure. 1997-09-04T07:00:00Z text application/pdf http://digitalcommons.fiu.edu/etd/1161 FIU Electronic Theses and Dissertations FIU Digital Commons Chemistry |
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Chemistry Aguilar, Martha Photocatalytic decomposition of organophosphonates fluorophenols in irradiated titanium dioxide suspensions |
description |
Dimethyl methyl phosphonate (DMMP), diethyl methyl phosphonate (DEMP), and fluorophenols undergo rapid decomposition upon TiO2 catalyzed photooxidation in air saturated aqueous solution. The degradation rates of DMMP were determined over a range of temperatures, under solar and artificial irradiation with and without simultaneous sonication. Solar illumination is effective for the degradation and the use of low energy of sonication increases the rate of mineralization. The surface area and the type of TiO2 dramatically affect the photoactivity of the catalyst. A number of intermediate products are formed and ultimately oxidized to phosphate and carbon dioxide. Possible reaction mechanisms and pathways for DMMP and DEMP are proposed. The Langmuir- Hinshelwood kinetic parameters for the photocatalysis of fluorophenols suggest modestly different reactivity for each isomer. The adsorption constant is largest for the ortho isomer consistent with the adsorption onto TiO2 through both hydroxyl and fluoride groups to form a chelated type structure. |
author |
Aguilar, Martha |
author_facet |
Aguilar, Martha |
author_sort |
Aguilar, Martha |
title |
Photocatalytic decomposition of organophosphonates fluorophenols in irradiated titanium dioxide suspensions |
title_short |
Photocatalytic decomposition of organophosphonates fluorophenols in irradiated titanium dioxide suspensions |
title_full |
Photocatalytic decomposition of organophosphonates fluorophenols in irradiated titanium dioxide suspensions |
title_fullStr |
Photocatalytic decomposition of organophosphonates fluorophenols in irradiated titanium dioxide suspensions |
title_full_unstemmed |
Photocatalytic decomposition of organophosphonates fluorophenols in irradiated titanium dioxide suspensions |
title_sort |
photocatalytic decomposition of organophosphonates fluorophenols in irradiated titanium dioxide suspensions |
publisher |
FIU Digital Commons |
publishDate |
1997 |
url |
http://digitalcommons.fiu.edu/etd/1161 |
work_keys_str_mv |
AT aguilarmartha photocatalyticdecompositionoforganophosphonatesfluorophenolsinirradiatedtitaniumdioxidesuspensions |
_version_ |
1718580849328259072 |