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Novel Photoelectrochemical Cell
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Novel Photoelectrochemical Cell - neues Buch

ISBN: 9783838352077

ID: 9783838352077

The second system involves the use of TiO2 coated electrodes with air electrodes as cathodes in either one or two compartment set ups, using many water soluble organic compounds as fuels. Such a system can be used to degrade many organics such as benzaldehyde, 1,2-dihydroxybenzene (CAT) potassium hydrogen phthalate, 2-propanol, phthalic acid (HHP), 4-chlorophenol, and ascorbic acid to mention but a few. The rate of degradation depends on the light source used, amount of lumens from the light The second system involves the use of TiO2 coated electrodes with air electrodes as cathodes in either one or two compartment set ups, using many water soluble organic compounds as fuels. Such a system can be used to degrade many organics such as benzaldehyde, 1,2-dihydroxybenzene (CAT) potassium hydrogen phthalate, 2-propanol, phthalic acid (HHP), 4-chlorophenol, and ascorbic acid to mention but a few. The rate of degradation depends on the light source used, amount of lumens from the light source reaching the catalytically coated surface, passivation, chemical nature and stability of the organic compound, pH and cell configuration. With daylight as the source, at room temperature the photoelectrocatalyic (pec) cell connected for 11 days brought about an 88 % degradation of CAT, 4 times more than a similar surface confined photocatalytic (pc) cell could offer. Textbooks New, Books~~Science~~Chemistry~~Physical & Theoretical, Novel-Photoelectrochemical-Cell~~Patrick-Enright, , , , , , , , , , AV Akademikerverlag GmbH & Co. KG.

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Novel Photoelectrochemical Cell - Patrick Enright
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Novel Photoelectrochemical Cell - neues Buch

2010, ISBN: 9783838352077

[ED: Pappeinband], [PU: Lap Lambert Acad. Publ.], - The second system involves the use of TiO2 coated electrodes with air electrodes as cathodes in either one or two compartment set ups, using many water soluble organic compounds as fuels. Such a system can be used to degrade many organics such as benzaldehyde, 1,2-dihydroxybenzene (CAT) potassium hydrogen phthalate, 2-propanol, phthalic acid (HHP), 4-chlorophenol, and ascorbic acid to mention but a few. The rate of degradation depends on the light source used, amount of lumens from the light source reaching the catalytically coated surface, passivation, chemical nature and stability of the organic compound, pH and cell configuration. With daylight as the source, at room temperature the photoelectrocatalyic (pec) cell connected for 11 days brought about an 88 % degradation of CAT, 4 times more than a similar surface confined photocatalytic (pc) cell could offer. - Besorgungstitel - vorauss. Lieferzeit 3-5 Tage.., [SC: 0.00]

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Novel Photoelectrochemical Cell - Enright, Patrick
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Enright, Patrick:
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2010, ISBN: 9783838352077

[ED: Softcover], [PU: Lap Lambert Academic Publishing], The second system involves the use of TiO2 coated electrodes with air electrodes as cathodes in either one or two compartment set ups, using many water soluble organic compounds as fuels. Such a system can be used to degrade many organics such as benzaldehyde, 1,2-dihydroxybenzene (CAT) potassium hydrogen phthalate, 2-propanol, phthalic acid (HHP), 4-chlorophenol, and ascorbic acid to mention but a few. The rate of degradation depends on the light source used, amount of lumens from the light source reaching the catalytically coated surface, passivation, chemical nature and stability of the organic compound, pH and cell configuration. With daylight as the source, at room temperature the photoelectrocatalyic (pec) cell connected for 11 days brought about an 88 % degradation of CAT, 4 times more than a similar surface confined photocatalytic (pc) cell could offer.2010. 308 S.Versandfertig in 3-5 Tagen, [SC: 0.00]

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Novel Photoelectrochemical Cell - Patrick Enright
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The second system involves the use of TiO2 coated electrodes with air electrodes as cathodes in either one or two compartment set ups, using many water soluble organic compounds as fuels. Such a system can be used to degrade many organics such as benzaldehyde, 1,2-dihydroxybenzene (CAT) potassium hydrogen phthalate, 2-propanol, phthalic acid (HHP), 4-chlorophenol, and ascorbic acid to mention but a few. The rate of degradation depends on the light source used, amount of lumens from the light source reaching the catalytically coated surface, passivation, chemical nature and stability of the organic compound, pH and cell configuration. With daylight as the source, at room temperature the photoelectrocatalyic (pec) cell connected for 11 days brought about an 88 % degradation of CAT, 4 times more than a similar surface confined photocatalytic (pc) cell could offer. Buch / Broschur

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Novel Photoelectrochemical Cell - Enright, Patrick
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2010, ISBN: 3838352076

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In this work, there are two systems described - Buch, gebundene Ausgabe, 308 S., Beilagen: Paperback, Erschienen: 2010 LAP Lambert Acad. Publ.

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Novel Photoelectrochemical Cell

The second system involves the use of TiO2 coated electrodes with air electrodes as cathodes in either one or two compartment set ups, using many water soluble organic compounds as fuels. Such a system can be used to degrade many organics such as benzaldehyde, 1,2-dihydroxybenzene (CAT) potassium hydrogen phthalate, 2-propanol, phthalic acid (HHP), 4-chlorophenol, and ascorbic acid to mention but a few. The rate of degradation depends on the light source used, amount of lumens from the light source reaching the catalytically coated surface, passivation, chemical nature and stability of the organic compound, pH and cell configuration. With daylight as the source, at room temperature the photoelectrocatalyic (pec) cell connected for 11 days brought about an 88 % degradation of CAT, 4 times more than a similar surface confined photocatalytic (pc) cell could offer.

Detailangaben zum Buch - Novel Photoelectrochemical Cell


EAN (ISBN-13): 9783838352077
ISBN (ISBN-10): 3838352076
Gebundene Ausgabe
Taschenbuch
Erscheinungsjahr: 2010
Herausgeber: LAP Lambert Acad. Publ.
308 Seiten
Gewicht: 0,472 kg
Sprache: eng/Englisch

Buch in der Datenbank seit 08.08.2008 16:54:34
Buch zuletzt gefunden am 19.10.2015 12:30:35
ISBN/EAN: 9783838352077

ISBN - alternative Schreibweisen:
3-8383-5207-6, 978-3-8383-5207-7


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