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Design of micro-shell Cu-Al porous ceramometals as catalysts for the water-gas shift reaction. / Tikhov, S.; Minyukova, T.; Valeev, K. et al.

In: RSC Advances, Vol. 7, No. 67, 01.01.2017, p. 42443-42454.

Research output: Contribution to journalArticlepeer-review

Harvard

Tikhov, S, Minyukova, T, Valeev, K, Cherepanova, S, Salanov, A, Kaichev, V, Saraev, A, Andreev, A, Lapina, O & Sadykov, V 2017, 'Design of micro-shell Cu-Al porous ceramometals as catalysts for the water-gas shift reaction', RSC Advances, vol. 7, no. 67, pp. 42443-42454. https://doi.org/10.1039/c7ra06672d

APA

Tikhov, S., Minyukova, T., Valeev, K., Cherepanova, S., Salanov, A., Kaichev, V., Saraev, A., Andreev, A., Lapina, O., & Sadykov, V. (2017). Design of micro-shell Cu-Al porous ceramometals as catalysts for the water-gas shift reaction. RSC Advances, 7(67), 42443-42454. https://doi.org/10.1039/c7ra06672d

Vancouver

Tikhov S, Minyukova T, Valeev K, Cherepanova S, Salanov A, Kaichev V et al. Design of micro-shell Cu-Al porous ceramometals as catalysts for the water-gas shift reaction. RSC Advances. 2017 Jan 1;7(67):42443-42454. doi: 10.1039/c7ra06672d

Author

Tikhov, S. ; Minyukova, T. ; Valeev, K. et al. / Design of micro-shell Cu-Al porous ceramometals as catalysts for the water-gas shift reaction. In: RSC Advances. 2017 ; Vol. 7, No. 67. pp. 42443-42454.

BibTeX

@article{da1c3008ed7944bdad5225c349463896,
title = "Design of micro-shell Cu-Al porous ceramometals as catalysts for the water-gas shift reaction",
abstract = "XRD, NMR, SEM with mapping, and XPS were used to examine the structure and microstructure of porous ceramometals, CuAlO/CuAl, synthesized by mechanochemical alloying of a mixture of Cu + Al (Cu:Al = 87:13 wt%) followed by hydrothermal treatment and heat treatment in air. The egg-shell nature of the microstructure was revealed: the metallic cores consisting of copper and aluminum alloys are surrounded by the oxide matrix containing copper oxides and X-ray amorphous mixed oxides of copper and aluminum. Catalytic activity of ceramometals in the water-gas shift reaction (WGSR) estimated for their fine fractions at 240 °C and expressed as efficient first-order rate constants is lower than that of a CuZnAl oxide catalyst due to the lower (approximately by an order of magnitude) specific surface area of the ceramometals. The specific activity of ceramometals expressed as the specific rate constant related to the unit surface area of metallic copper exceeds that for the CuZnAl oxide catalyst and correlates with the content of crystallized intermetallics. Mechanical, textural and thermophysical properties of ceramometals were assessed. The presence of ultramacropores with sizes up to tens of microns was shown to be typical for ceramometals. As a result, the activity of granulated ceramometal catalysts in the WGSR, due to a high diffusion permeability, is comparable with that of granulated CuZnAl oxide. A mild leaching substantially increases the activity of cermet granules.",
keywords = "X-RAY PHOTOELECTRON, ALUMINA, COPPER, XPS, METHANOL, OXIDES, SPECTROSCOPY, MECHANISMS, REDUCTION, OXIDATION",
author = "S. Tikhov and T. Minyukova and K. Valeev and S. Cherepanova and A. Salanov and V. Kaichev and A. Saraev and A. Andreev and O. Lapina and V. Sadykov",
year = "2017",
month = jan,
day = "1",
doi = "10.1039/c7ra06672d",
language = "English",
volume = "7",
pages = "42443--42454",
journal = "RSC Advances",
issn = "2046-2069",
publisher = "ROYAL SOC CHEMISTRY",
number = "67",

}

RIS

TY - JOUR

T1 - Design of micro-shell Cu-Al porous ceramometals as catalysts for the water-gas shift reaction

AU - Tikhov, S.

AU - Minyukova, T.

AU - Valeev, K.

AU - Cherepanova, S.

AU - Salanov, A.

AU - Kaichev, V.

AU - Saraev, A.

AU - Andreev, A.

AU - Lapina, O.

AU - Sadykov, V.

PY - 2017/1/1

Y1 - 2017/1/1

N2 - XRD, NMR, SEM with mapping, and XPS were used to examine the structure and microstructure of porous ceramometals, CuAlO/CuAl, synthesized by mechanochemical alloying of a mixture of Cu + Al (Cu:Al = 87:13 wt%) followed by hydrothermal treatment and heat treatment in air. The egg-shell nature of the microstructure was revealed: the metallic cores consisting of copper and aluminum alloys are surrounded by the oxide matrix containing copper oxides and X-ray amorphous mixed oxides of copper and aluminum. Catalytic activity of ceramometals in the water-gas shift reaction (WGSR) estimated for their fine fractions at 240 °C and expressed as efficient first-order rate constants is lower than that of a CuZnAl oxide catalyst due to the lower (approximately by an order of magnitude) specific surface area of the ceramometals. The specific activity of ceramometals expressed as the specific rate constant related to the unit surface area of metallic copper exceeds that for the CuZnAl oxide catalyst and correlates with the content of crystallized intermetallics. Mechanical, textural and thermophysical properties of ceramometals were assessed. The presence of ultramacropores with sizes up to tens of microns was shown to be typical for ceramometals. As a result, the activity of granulated ceramometal catalysts in the WGSR, due to a high diffusion permeability, is comparable with that of granulated CuZnAl oxide. A mild leaching substantially increases the activity of cermet granules.

AB - XRD, NMR, SEM with mapping, and XPS were used to examine the structure and microstructure of porous ceramometals, CuAlO/CuAl, synthesized by mechanochemical alloying of a mixture of Cu + Al (Cu:Al = 87:13 wt%) followed by hydrothermal treatment and heat treatment in air. The egg-shell nature of the microstructure was revealed: the metallic cores consisting of copper and aluminum alloys are surrounded by the oxide matrix containing copper oxides and X-ray amorphous mixed oxides of copper and aluminum. Catalytic activity of ceramometals in the water-gas shift reaction (WGSR) estimated for their fine fractions at 240 °C and expressed as efficient first-order rate constants is lower than that of a CuZnAl oxide catalyst due to the lower (approximately by an order of magnitude) specific surface area of the ceramometals. The specific activity of ceramometals expressed as the specific rate constant related to the unit surface area of metallic copper exceeds that for the CuZnAl oxide catalyst and correlates with the content of crystallized intermetallics. Mechanical, textural and thermophysical properties of ceramometals were assessed. The presence of ultramacropores with sizes up to tens of microns was shown to be typical for ceramometals. As a result, the activity of granulated ceramometal catalysts in the WGSR, due to a high diffusion permeability, is comparable with that of granulated CuZnAl oxide. A mild leaching substantially increases the activity of cermet granules.

KW - X-RAY PHOTOELECTRON

KW - ALUMINA

KW - COPPER

KW - XPS

KW - METHANOL

KW - OXIDES

KW - SPECTROSCOPY

KW - MECHANISMS

KW - REDUCTION

KW - OXIDATION

UR - http://www.scopus.com/inward/record.url?scp=85028942000&partnerID=8YFLogxK

U2 - 10.1039/c7ra06672d

DO - 10.1039/c7ra06672d

M3 - Article

AN - SCOPUS:85028942000

VL - 7

SP - 42443

EP - 42454

JO - RSC Advances

JF - RSC Advances

SN - 2046-2069

IS - 67

ER -

ID: 9915094