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Ning Liu

Researcher at Beijing University of Chemical Technology

Publications -  62
Citations -  1629

Ning Liu is an academic researcher from Beijing University of Chemical Technology. The author has contributed to research in topics: Catalysis & Chemistry. The author has an hindex of 17, co-authored 45 publications receiving 1093 citations.

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Selective Transformation of Various Nitrogen-Containing Exhaust Gases toward N2 over Zeolite Catalysts.

TL;DR: Emphasis is placed on the structure-performance relationship with an aim to design an ideal zeolite-based catalyst for the effective elimination of harmful N-containing compounds.
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Economical way to synthesize SSZ-13 with abundant ion-exchanged Cu+ for an extraordinary performance in selective catalytic reduction (SCR) of NOx by ammonia.

TL;DR: The characterization of samples confirmed that Cu-SSZ-13 possessed the most abundant Cu cations among three investigated Cu-zeolites, and new finding was announced that CHA-type topology is in favor of the formation of copper cations, especially generating much more Cu(+) ions than the others, rather than CuO.
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Auδ−–Ov–Ti3+ Interfacial Site: Catalytic Active Center toward Low-Temperature Water Gas Shift Reaction

TL;DR: The electronic metal-support interaction (EMSI) plays a crucial role in promoting catalytic performance toward interface electronic structure sensitive reactions, such as the low temperature water reaction as mentioned in this paper, but it is not suitable for high temperature water reactions.
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Comparative study on the direct decomposition of nitrous oxide over M (Fe, Co, Cu)–BEA zeolites

TL;DR: In this article, a unique intermediate was generated only over Co-BEA, which was verified by the activity evaluation and N2O-TPD experiments, showing that the formation of IM reduced the decomposition rate of Co−BEA.
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Mesoporous SBA-15 promoted by 3d-transition and noble metals for catalytic combustion of acetonitrile

TL;DR: A series of M/SBA-15 [M = 3d transition metals (Cu, Co, Fe, V, Mn) and noble metals (Pd, Ag, Pt)] catalysts was prepared via an impregnation method, and further characterized by XRD, N2 physical adsorption, TEM, H2-TPR and XPS as well as activity test for CH3CN+O2 reaction as mentioned in this paper.