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15篇 您的检索式:作者名="Loenders"
    题名 作者 年代 出处 被引量
1显示文摘Loenders B Jorens PG Herman AG 1996Eur J Pharmacol1996,18,296:1
2Alkylation of isobu- tane with 1-butene on zeolite beta显示文摘Loenders R Jacobs P A Martens J A 1998Journal of Catalysis1998,176,:1
3Overexpression of ornithine-δ-aminotransferase increases proline biosynthesis and confers osmotolerance in transgenic plants显示文摘Nancy H. Roosens Fawaz Al Bitar Kristof Loenders Geert Angenon Michel Jacobs 2002Molecular Breeding2002,,2:1
4Overexpression of ornithine-δaminotransferase increases proline biosynthesis and confers osmotolerance in transgenic plants 显示文摘Roosens N H Bitar F A Loenders K 2002Molecular Breeding2002,,9:1
5Overexpression of ornithine-δ-aminotransferase increases proline biosynthesis and confers osmotolerance in transgenic plants显示文摘ROOSENS N H AL BITAR F LOENDERS K 2002Molecular Breeding:New Strategies in Plant Improvement2002,9,2:1
6Localization of extracellular superoxide dismutase in rat lung: neutrophils and macrophages as carriers of the enzyme显示文摘Loenders B Van Mechelen E Nicolai S 1998Free Radic Biol Med1998,24,78:1
7Overexpression of ornithine-δ-aminotransferase increases proline biosynthesis and confers osmotolerance in transgenic plants 显示文摘Roosens N H C J Bitar F A Loenders K 2002Molec Breedi2002,9,:1
8NOx removal from exhaust gas from lean burn internal combustion engines through adsorption on FAU type zeolites cation exchanged with alkali metals and alkaline earth metals显示文摘Monticelli O Loenders R Jacobs P A 1999Appl Catal B: Environ1999,21,:1
9Localizationof extracellular superoxide dismutase in rat lung neutrophils andmacrophages as carriers of the enzyme显示文摘LOENDERS B van MECHELEN E NICOLAI S 1998Free Radical Biology andMedicine1998,24,:1
10Overexpression of ornithine δ-arninotransferase increase proline biosynthesis and confers osmotolerance in transgenic plants显示文摘Roosens N H Bitar F A Loenders K 2002Molecular Breeding2002,9,:1
11Overexpression of ornithine-3-aminotransferase in- creases proline biosynthesis and confers osmotoler- ance in transgenic plants 显示文摘Roosens N H A1 Bitar F Loenders K 2002Molecular Breeding2002,9,2:1
12Alkylation of Isobutane with 1-Butene on Zeolite Beta显示文摘R. Loenders P.A. Jacobs J.A. Martens 1998Journal of Catalysis1998,,2:1
13Localization of extracellular superoxide dismutase in rat lungs neutrophils and macrophages as carriers of the enzyme 显示文摘LOENDERS B VAN MECHELEN E NICOLAI S 1998Free Radic Biol Med1998,24,78:1
14Localization of extracellular superoxide dismutase in rat lang:neutrophils and macrophages as carriers of the enzyme显示文摘Loenders B Van M E Nicolai S 1998Free Radic Biol Med1998,24,:1
15Is a catalyst always beneficial in plasma catalysis? Insights from the many physical and chemical interactions显示文摘Plasma-catalytic dry reforming of CH_(4)(DRM) is promising to convert the greenhouse gasses CH_(4) and CO_(2) into value-added chemicals, thus simultaneously providing an alternative to fossil resources as feedstock for the chemical industry. However, while many experiments have been dedicated to plasma-catalytic DRM, there is no consensus yet in literature on the optimal choice of catalyst for targeted products,because the underlying mechanisms are far from understood. Indeed, plasma catalysis is very complex,as it encompasses various chemical and physical interactions between plasma and catalyst, which depend on many parameters. This complexity hampers the comparison of experimental results from different studies, which, in our opinion, is an important bottleneck in the further development of this promising research field. Hence, in this perspective paper, we describe the important physical and chemical effects that should be accounted for when designing plasma-catalytic experiments in general, high-lighting the need for standardized experimental setups, as well as careful documentation of packing properties and reaction conditions, to further advance this research field. On the other hand, many parameters also create many windows of opportunity for further optimizing plasma-catalytic systems.Finally, various experiments also reveal the lack of improvement in plasma catalysis compared to plasma-only, specifically for DRM, but the underlying mechanisms are unclear. Therefore, we present our newly developed coupled plasma-surface kinetics model for DRM, to provide more insight in the underlying reasons. Our model illustrates that transition metal catalysts can adversely affect plasmacatalytic DRM, if radicals dominate the plasma-catalyst interactions. Thus, we demonstrate that a good understanding of the plasma-catalyst interactions is crucial to avoiding conditions at which these interactions negatively affect the results, and we provide some recommendations for improvement. For instance, we believe that plasma-catalytic DRM may benefit more from higher reaction temperatures,at which vibrational excitation can enhance the surface reactions.Björn Loenders Roel Michiels Annemie Bogaerts 2023Journal of Energy Chemistry2023,,10:0
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