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Ethanol Dehydration Pathways on NASICON-Type A0.33M2(PO4)3 ((A = Dy, Y, Yb); M = Ti, Zr) Catalysts: The Role of Hydroxyl Group Proton Mobility in Selectivity ControlNASICON-type titanium and zirconium phosphates doped with rare-earth cations, A0.33M2(PO4)3 (M = Ti

Catalytic properties of the framework-structured zirconium-containing phosphates in ethanol conversion be considered as a selective catalyst for producing acetaldehyde at 400 °C with a yield of 55% from its

Novel Complex Titanium NASICON-Type Phosphates as Acidic Catalysts for Ethanol Dehydration special consideration from the perspective of green chemistry. Ethanol dehydration was studied on a

Zirconium framework-structured phosphates with alkali metals as catalysts for the ethanol conversion

Acidic properties of M0,5(1+x)AlxTi2-x(PO4)3 catalysts: effect on ethanol dehydration activity

Catalytic characteristics of NASICON-type phosphates with rare earth elements in ethanol conversion that the transition from La to Dy was accompanied by a decrease in M − O bond lengths, which is compensated by longer

Catalytic properties of the framework-structured zirconium-containing phosphates in ethanol conversion yields. Based on the results obtained, the NZP-sample Ca0.5Zr2(PO4)3 can be considered as a selective

COPPER CATALYSTS WITH COMPLEX OXIDES OF ALUMINIUM AND ZIRCONIUM Cu – (Zr + Ce)O2 – Al2O3 AS CARRIER IN THE PROCESS OF ETHANOL CONVERSION: EFFECT OF CATALYST COMPOSITION AND ETHANOL CONCENTRATIONThe impregnation technique was used to produce a range of copper catalysts with different

Анализ физической подготовленности студентов с применением тестов ВФСК ГТОThe paper presents a comparative analysis of the physical fitness of students using the tests

Влияние физической культуры и спорта на профессиональную деятельность будущих работников железнодорожного транспорта

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