Search Results - "Ben W.-L. Jang"
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Synthetic Strategies of Supported Pd-Based Bimetallic Catalysts for Selective Semi-Hydrogenation of Acetylene: A Review and Perspectives
Published in Molecules (Basel, Switzerland) (12-03-2023)“…Selective semi-hydrogenation of acetylene is an extremely important reaction from both industrial and theoretical perspectives. Palladium, due to its unique…”
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Enhanced effect of water vapor on complete oxidation of formaldehyde in air with ozone over MnOx catalysts at room temperature
Published in Journal of hazardous materials (15-11-2012)“…In humid air streams (RH≥55%), ∼100% of formaldehyde could be oxidized into CO2 by ozone over MnOx catalysts and the reaction stability was significantly…”
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3
Design of Pd–Zn Bimetal MOF Nanosheets and MOF-Derived Pd3.9Zn6.1/CNS Catalyst for Selective Hydrogenation of Acetylene under Simulated Front-End Conditions
Published in Molecules (Basel, Switzerland) (05-09-2022)“…Novel zinc–palladium–porphyrin bimetal metal–organic framework (MOF) nanosheets were directly synthesized by coordination chelation between Zn(II) and Pd(II)…”
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4
Catalyst Preparation with Plasmas: How Does It Work?
Published in ACS catalysis (02-03-2018)“…Catalyst preparation with plasmas is increasingly attracting interest. A plasma is a partially ionized gas, consisting of electrons, ions, molecules, radicals,…”
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5
Investigation of the preparation methodologies of Pd-Cu single atom alloy catalysts for selective hydrogenation of acetylene
Published in Frontiers of chemical science and engineering (01-12-2015)“…Galvanic replacement, co-impregnation and sequential impregnation have been employed to prepare Pd-Cu bimetallic catalysts with less than 1 wt-% Cu and ca…”
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Plasma application for more environmentally friendly catalyst preparation
Published in Pure and applied chemistry (01-06-2006)“…The present status of catalyst preparation using nonthermal plasma treatment has been summarized in this paper. Improved dispersion, better low-temperature…”
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Selective Hydrogenation of Acetylene Over Pd/Al2O3 Catalysts: Effect of Non-thermal RF Plasma Preparation Methodologies
Published in Topics in catalysis (01-08-2017)“…Supported palladium nanocatalysts have been reported to be active in selective hydrogenation of acetylene. In this work, non-thermal radio frequency plasma…”
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8
Synergy of Lithium, Cobalt, and Oxygen Vacancies in Lithium Cobalt Oxide for Airborne Benzene Oxidation: A Concept of Reusing Electronic Wastes for Air Pollutant Removal
Published in ACS sustainable chemistry & engineering (04-03-2019)“…In this study, a recovery strategy of turning cathode materials of waste lithium-ion batteries, lithium cobalt oxide (LiCoO2), into high-performance catalysts…”
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Gold on carbon and titanium oxides composites: Highly efficient and stable acetylene hydrogenation in large excess of ethylene
Published in Journal of catalysis (01-12-2016)“…[Display omitted] •Gold on carbon and TiO2 composites are generated by photocatalysis approach in preparing Au/C-TiO2-am and Au-Pd/C-TiO2-am.•Au/C-TiO2-am is…”
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Insights into surface properties of non-thermal RF plasmas treated Pd/TiO2 in acetylene hydrogenation
Published in Journal of molecular catalysis. A, Chemical (01-12-2014)“…•RF plasma treatment enhances Pd dispersion and induces the SMSI at room temperature.•Surface defects of Pd metal particles are produced with plasma…”
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Room temperature O2 plasma treatment of SiO2 supported Au catalysts for selective hydrogenation of acetylene in the presence of large excess of ethylene
Published in Journal of catalysis (01-01-2012)“…The O2 plasma working under mild conditions can remove the organic compounds efficiently without causing aggregation of gold nanoparticles. The O2…”
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12
Ionic liquid and plasma effects on SiO2 supported Pd for selective hydrogenation of acetylene
Published in Catalysis today (01-08-2013)“…The C2H4 yield of Pd/EmimBF4/SiO2 is stabilized by the Ar-plasma treatment. •Pd/IL/SiO2 catalysts are effective for selective hydrogenation of acetylene in…”
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Journal Article Conference Proceeding -
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Preparation and investigation of Pd doped Cu catalysts for selective hydrogenation of acetylene
Published in Frontiers of chemical science and engineering (01-08-2020)“…A series of PdCu bimetallic catalysts with low Cu and Pd loadings and different Cu: Pd atomic ratios were prepared by conventionally sequential impregnation…”
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Novel and Green Synthesis of Nitrogen-Doped Carbon Cohered Fe3O4 Nanoparticles with Rich Oxygen Vacancies and Its Application
Published in Catalysts (01-06-2022)“…A one-pot and green synthesis methodology was successfully designed to prepare nitrogen-doped carbon (NC) cohered Fe3O4 nanoparticles with rich oxygen…”
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15
Recent Advances in Plasma Catalysis (ISPCEM 2016)
Published in Topics in catalysis (01-08-2017)Get full text
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Nonthermal RF Plasma Modifications on Pd/γ-Al2O3 for Selective Hydrogenation of Acetylene in the Presence of Ethylene
Published in Industrial & engineering chemistry research (16-08-2006)“…Nonthermal RF plasma modification has been applied to alumina-supported Pd catalysts for selective hydrogenation of acetylene in the presence of ethylene. High…”
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Frontiers in plasma catalysis (ISPCEM 2018)
Published in Catalysis today (15-10-2019)Get full text
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Selective hydrogenation of acetylene over Pd/CeO2
Published in Frontiers of chemical science and engineering (01-12-2020)“…Five hundred ppm Pd/CeO 2 catalyst was prepared and evaluated in selective hydrogenation of acetylene in large excess of ethylene since ceria has been recently…”
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Promotion Effects of Air and H2 Nonthermal Plasmas on TiO2 Supported Pd and Pd−Ag Catalysts for Selective Hydrogenation of Acetylene
Published in Industrial & engineering chemistry research (20-06-2007)“…Selective hydrogenation of acetylene in rich ethylene was investigated over uncalcined, air plasma, and H2 plasma Pd/TiO2 and Pd−Ag/TiO2 catalysts. Air and H2…”
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Catalyst preparation using plasma technologies
Published in Catalysis today (15-03-2002)“…This paper discusses catalyst preparation using thermal and cold plasmas. In general, there are three main trends in preparing catalysts using plasma…”
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