Search Results - "Zhang, Junshe"
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Coke-resistant Ni@SiO2 catalyst for dry reforming of methane
Published in Applied catalysis. B, Environmental (01-10-2015)“…[Display omitted] •Ni@SiO2 core is prepared by a facile and scalable method.•Calcination of as-synthesized core–shell nanoparticles creates micro/mesopores in…”
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Oxygen Species Involved in Complete Oxidation of CH4 by SrFeO3-δ in Chemical Looping Reforming of Methane
Published in Materials (01-07-2024)“…Compared with conventional methane reforming technologies, chemical looping reforming (CLR) has the advantages of self-elimination of coke, a suitable syngas…”
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Thermodynamic analysis of hydrate-based pre-combustion capture of CO2
Published in Chemical engineering science (16-11-2009)Get full text
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Production of boron-doped porous carbon by the reaction of carbon dioxide with sodium borohydride at atmospheric pressure
Published in Carbon (New York) (01-03-2013)“…Boron-doped porous carbon was produced from carbon dioxide (CO2) reaction with sodium borohydride at moderate conditions. The reaction was first investigated…”
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Enhanced Kinetics of CO2 Hydrate Formation under Static Conditions
Published in Industrial & engineering chemistry research (01-07-2009)“…Trapping CO2 in hydrates is one of the new technologies for CO2 capture and storage. One of the primary obstacles to this option is the low formation rate…”
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Investigations of surfactant effects on gas hydrate formation via infrared spectroscopy
Published in Journal of colloid and interface science (15-06-2012)“…[Display omitted] ► Explain the full role of SDS in nucleation and extended growth phase using IR spectroscopy. ► Observe both ice- and water-like OH stretches…”
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Slow Adsorption Reaction between Arsenic Species and Goethite (α-FeOOH): Diffusion or Heterogeneous Surface Reaction Control
Published in Langmuir (29-03-2005)“…The slow stage of phosphate or arsenate adsorption on hydrous metal oxides frequently follows an Elovich equation. The equation can be derived by assuming…”
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Cobalt-Based Perovskites as Efficient Oxygen Exchange Redox Materials for Solar Thermochemical Application
Published in SolarPACES Conference Proceedings (24-07-2024)“…Solar thermochemical CO2 splitting (STCS) cycles provide the promising routes to generate renewable fuel, fuel precursors, or chemical feedstocks by the…”
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Oxygen release and reduction kinetics of La0.35Sr0.35Ba0.3Fe1-xCoxO3 as oxygen carriers for chemical looping dry reforming of methane
Published in Applications in energy and combustion science (01-09-2023)“…Chemical looping dry reforming of methane (CL-DRM) is a viable technology by converting CH4 and CO2 to various value-added products to achieve carbon…”
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Reduction kinetics of SrFeO3−δ/CaO·MnO nanocomposite as effective oxygen carrier for chemical looping partial oxidation of methane
Published in Frontiers of chemical science and engineering (01-12-2022)“…Chemical looping reforming of methane is a novel and effective approach to convert methane to syngas, in which oxygen transfer is achieved by a redox material…”
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CO2 Reforming of Ethanol: Density Functional Theory Calculations, Microkinetic Modeling, and Experimental Studies
Published in ACS catalysis (21-08-2020)“…Ethanol dry reformation (EDR) is a chemical process for syngas production, which consumes a greenhouse gas and reduces carbon footprint. We present a…”
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Synthesis of Cellular Silica Using Microbubbles as Templates
Published in Nanomaterials (Basel, Switzerland) (01-08-2022)“…In this work, cellular silica was synthesized by using microbubbles as templates, which contain a mixture of argon and silicon tetrafluoride (SiF4). The latter…”
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Carbon Dioxide-Facilitated Low-Temperature Hydrogen Desorption from Polyaminoborane
Published in Journal of physical chemistry. C (28-02-2013)“…Gaseous CO2 environments dramatically enhance the thermolytic dehydrogenation of polyaminoborane (PAB) at 85 - 90 °C. By exposing PAB to 2.07 MPa CO2, 5.48 wt…”
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Thermal Decomposition and Spectroscopic Studies of Preheated Ammonia Borane
Published in Journal of physical chemistry. C (18-11-2010)“…This paper presents enhanced dehydrogenation of solid ammonia borane (AB, NH3BH3) at 85 °C after it was preheated at 80 °C for 2−4 h. Thermal treatments and…”
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Inhibition Effect of Surfactants on CO2 Enclathration with Cyclopentane in an Unstirred Batch Reactor
Published in Industrial & engineering chemistry research (20-05-2009)“…The effect of sodium dodecyl sulfate (SDS), cetyl trimethylammonium bromide (CTAB), and fatty alcohol EO/PO derivative (LS54) on unsteady-state CO2 absorption…”
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Can Steam- and CO-Rich Streams Be Produced Sequentially in the Isothermal Chemical Looping Super-Dry Reforming Scheme?
Published in ACS omega (17-03-2020)“…Super-dry reforming of methane (CH4 + 3CO2 → 2H2O + 4CO) is a very promising route for CO2 utilization. To maximize the yield of CO, a water–gas shift reaction…”
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Chlorine-promoted perovskite nanocomposite as a high-performance oxygen transfer agent for chemical looping methane-assisted CO2 splitting
Published in Chemical engineering journal advances (15-12-2020)“…•Chlorine promotes coke formation.•Tailored window both suppresses complete oxidation and enhances CH4 and CO2 transformations.•CH4 conversion reaches 98% and…”
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Formation of Graphene Oxide Nanocomposites from Carbon Dioxide Using Ammonia Borane
Published in Journal of physical chemistry. C (26-01-2012)“…To efficiently recycle CO2 to economically viable products such as liquid fuels and carbon nanomaterials, the reactivity of CO2 is required to be fully…”
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Effect of Composition on Dehydrogenation of Mesoporous Silica/Ammonia Borane Nanocomposites
Published in Industrial & engineering chemistry research (07-09-2011)“…This paper discusses the dehydrogenation of ammonia borane (AB) and MCM-41/AB nanocomposites in which the loading level of AB (i.e., the mass ratio of AB to…”
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Progress and prospects in thermolytic dehydrogenation of ammonia borane for mobile applications
Published in The Korean journal of chemical engineering (01-04-2012)“…Using hydrogen as a transportation fuel has been attracting considerable interest due to zero carbon emissions from vehicles. Storing hydrogen compactly,…”
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