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Iron-containing zeolites based on HZSM-5 in catalytic process of propane cracking

Effect of CuBTC Composition, Structure, and Morphology on the Catalytic and Antimicrobial Properties by X-ray diffraction (cell parameters, intensity ratio of a series of indicator reflections) and X

New Nanocomposite Anticorrosion Materials Based on Copper Ions for Resource and Energy Saving. The specific surface area of HKUST-1 was 569 m2/g with a narrow size distribution of 3–4 nm with a small

SYSTEMS FOR HYDROGEN ACCUMULATION BASED ON NANOSTRUCTURED ORGANIC FRAMEWORK of a nanostructured organic framework for hydrogen storage has been proven. The resulting substances

New Iron-Containing MFI-Type Zeolites in the Catalytic Conversion of Ethanol, Propane, and N2O

High-Performance Ni/Al2O3-(Zr + Ce)O2 catalysts for syngas production via ethanol dry reforming2 and CO yields (∼77% each, with a CO/H2 ratio close to 1) and exceptional C2H5OH/CO2 conversions

Ethanol Dry Reforming for Hydrogen-Rich Syngas Production over Cu-Promoted Ni/Al2O3–ZrO2 Catalysts is a challenge in the catalytic ethanol dry reforming (EDR) process. An effective and practical

Development of Metal–Organic Molecular Sieves for the Separation and Sorption of СО2 and СН4

Crystallochemical design of metal–organic polymer CuBTC and activated carbon composite by hydrothermal method (BTC3− is a linker 1,3,5-benzenetricarboxylate ion, hydrolysis temperature 130 °C, ethanol

Ethanol Dry Reforming for Hydrogen-Rich Syngas Production over Cu-Promoted Ni/Al2O3-ZrO2 Catalysts is a challenge in the catalytic ethanol dry reforming (EDR) process. An effective and practical

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