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The results showed that Fe doping could enhance water spreading on the thin film surface after Xe lamp irradiation.
It is highly desirable to develop visible-light driven photocatalysts with high photocatalytic performance under sunlight or daylight lamp irradiation.
Furthermore, photodecomposition performances were evaluated by the yield of OH radicals and photocatalytic (PC) degradation of methyl blue (MB) under Xenon lamp irradiation.
The photoelectrocatalytic PEC) performances were evaluated by the yield of OH radicals and degradation of methyl orange(MO) under Xenon lamp irradiation.
The efficiency of the reactors for volatile organic compound removal from high flow rates of air under Hg lamp irradiation using N F-TiO2 photocatalyst was iN F-TiO2ted.
The dramatically enhanced photocatalytic activity of the CuFe2O4 nanospheres was evaluated via the photocatalytic conversion of benzene under Xe lamp irradiation.
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The sensitivity under continuous Hg-lamp irradiation was similar to that under low-energy laser irradiation.
N-Fe-AC/TiO2 degraded 93%% of the formaldehyde under Xe-lamp irradiation.
By monitoring rhodamine B discolouration after Xenon-lamp irradiation a remarkable photocatalytic activity of the nano-TiO2-based treatments was found [29, 30].
Methylene blue (MB) was used as a model pollutant to evaluate the photodegradation ability of PTFE/PAA/TiO2 composite membranes under full-arc Xe-lamp irradiation.
HCHO degradation was examined in the presence of undoped and doped AC/TiO2 powders under Xe-lamp irradiation to determine the resulting photocatalytic responses.
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