Acid-modified clinoptilolite as a support for palladium–copper complexes catalyzing carbon monoxide oxidation with air oxygen

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dc.contributor.author Rakitskaya, T. L. en
dc.contributor.author Kiose, T. A. en
dc.contributor.author Golubchik, K. O. en
dc.contributor.author Ennan, A. A. en
dc.contributor.author Volkova, V. Y. en
dc.date.accessioned 2023-05-02T06:38:27Z
dc.date.available 2023-05-02T06:38:27Z
dc.date.issued 2017
dc.identifier.citation Acid-modified clinoptilolite as a support for palladium–copper complexes catalyzing carbon monoxide oxidation with air oxygen / T. L. Rakitskaya, T. A. Kiose, K. O. Golubchik et al. // Chemistry Central Journal. 2017. No. 11 (28). P. 1–10. en
dc.identifier.uri https://repo.odmu.edu.ua:443/xmlui/handle/123456789/12683
dc.description.abstract Samples of natural clinoptilolite were modified by an acid–thermal method at nitric acid concentrations of 0.25, 0.5, 1.0, and 3.0 M and a contact time of 30 min. A series of catalysts, K2PdCl4–Cu(NO3)2–KBr/S (S = 0.25H-CLI, 0.5H-CLI, 1H-CLI, and 3H-CLI) was obtained. All samples were investigated by X-ray phase and thermogravimetric analysis, FT-IR spectroscopy, water vapor ad/desorption and pH metric method. Besides, K2PdCl4–Cu(NO3)2–KBr/S samples were tested in the reaction of low-temperature carbon monoxide oxidation. It have been found that, owing to special physicochemical and structural-adsorption properties of 3H-CLI, it promotes formation of the palladium–copper catalyst providing carbon monoxide oxidation at the steady-state mode down to CO concentrations lower than its maximum permissible concentration at air relative humidity varied within a wide range. en
dc.language.iso en en
dc.subject Clinoptilolite en
dc.subject Acid modification en
dc.subject FT-IR spectroscopy en
dc.subject XRD method en
dc.subject Water vapor adsorption en
dc.subject DTG/DTA en
dc.subject Palladium–copper catalysts en
dc.subject CO oxidation en
dc.title Acid-modified clinoptilolite as a support for palladium–copper complexes catalyzing carbon monoxide oxidation with air oxygen en
dc.type Article en


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