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Applied catalysis. A, General, ISSN 0926-860X, 06/2013, Volume 460-461, pp. 106 - 115
Steam catalytic cracking (SCC) | Production of propene and ethene | Steam deactivation of IM-5 zeolite | IM-5 hydrothermal stability | Production of propene and ethane | Physical Sciences | Chemistry | Life Sciences & Biomedicine | Environmental Sciences & Ecology | Chemistry, Physical | Science & Technology | Environmental Sciences | Surface physical chemistry | Theory of reactions, general kinetics. Catalysis. Nomenclature, chemical documentation, computer chemistry | Exact sciences and technology | Ion-exchange | Zeolites: preparations and properties | General and physical chemistry | Catalysis | Propylene | Refining | Zeolites | Petroleum | Ethene | Stability | Naphtha | Olefins | Catalytic activity | Catalytic cracking
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Applied catalysis. A, General, ISSN 0926-860X, 04/2012, Volume 421-422, pp. 121 - 134
Zeolite dealumination | Olefins production | Steam catalytic cracking (SCC) | Alkenes production | Phosphorous stabilized zeolite | ZSM-5 hydrothermal stability | Si/Al ratio | Physical Sciences | Chemistry | Life Sciences & Biomedicine | Environmental Sciences & Ecology | Chemistry, Physical | Science & Technology | Environmental Sciences | Surface physical chemistry | Theory of reactions, general kinetics. Catalysis. Nomenclature, chemical documentation, computer chemistry | Exact sciences and technology | Ion-exchange | Zeolites: preparations and properties | General and physical chemistry | Catalysis | Propylene | Refining | Zeolites | Olefins | Petroleum | Ethene | Deactivation | Fracture mechanics | Catalysts | Naphtha | Catalytic cracking
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Applied catalysis. A, General, ISSN 0926-860X, 02/2012, Volume 417-418, pp. 220 - 235
Production of ethene and propene by catalytic cracking | Steam catalytic cracking (SCC) | Steam catalytic cracking of naphtha | Steam deactivation of ZSM-5 | Physical Sciences | Chemistry | Life Sciences & Biomedicine | Environmental Sciences & Ecology | Chemistry, Physical | Science & Technology | Environmental Sciences | Surface physical chemistry | Theory of reactions, general kinetics. Catalysis. Nomenclature, chemical documentation, computer chemistry | Exact sciences and technology | Ion-exchange | Zeolites: preparations and properties | General and physical chemistry | Catalysis | Propylene | Refining | Naphtha | Zeolites | Olefins | Petroleum
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ChemistrySelect (Weinheim), ISSN 2365-6549, 04/2020, Volume 5, Issue 16, pp. 4905 - 4912
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Journal of fuel chemistry and technology, ISSN 1872-5813, 03/2019, Volume 47, Issue 3, pp. 287 - 296
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Corrosion (Houston, Tex.), ISSN 0010-9312, 02/2018, Volume 74, Issue 2, pp. 210 - 224
Materials Science | Technology | Materials Science, Multidisciplinary | Metallurgy & Metallurgical Engineering | Science & Technology | Grain boundaries | Huey test | Chromium carbide | Laboratories | Transmission | Photomicrographs | Analytical techniques | Iron | Activation | X-ray spectroscopy | Stress corrosion cracking | Superalloys | Optimization | Sulfuric acid | Tubing | Profiles | Ferrous alloys | Aging | Thiocyanates | Nuclear power plants | Nitric acids | Sulfur | Sulphuric acid | Grain size | Nickel base alloys | Alloys | Steam electric power generation | Boilers | Generators | Carbon | Cracking (corrosion) | Nitric acid | Nuclear power | Heat | Stress corrosion | Depletion | Corrosion | Solid solutions | Stainless steel | Steam | Chromium | Electrochemistry | Nickel | Potassium
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Faraday discussions, ISSN 1359-6640, 7/2015, Volume 18, pp. 233 - 249
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05/2000, Volume 39, Issue 5
Magazine Article
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Full Text
Protective coatings on zirconium-based alloys as accident-tolerant fuel (ATF) claddings
Corrosion reviews, ISSN 0334-6005, 08/2017, Volume 35, Issue 3, pp. 141 - 165
oxidation | protective coatings | corrosion | ATF | Zr-based alloy claddings | Physical Sciences | Materials Science | Technology | Materials Science, Coatings & Films | Metallurgy & Metallurgical Engineering | Electrochemistry | Science & Technology | Metal cladding | Zirconium | Composition | Innovations | Alloys | Properties | Coatings | Zirconium alloys | Materials | Accident conditions | Nuclear engineering | Materials selection | Hydrothermal fields | Tests | Reactors | Temperature effects | Corrosion tests | Reliability analysis | Oxidation | Protective coatings | Zirconium base alloys | Oxidation tests | Stability | Alloy development | Nuclear safety | Claddings | Nuclear fuels | Utilization | Corrosion | Steam | Coating materials | Autoclaving | Accidents
Journal Article
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