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Progress of the Pd Catalysts for Methane Oxidation under Low Temperature£¨DU Jun-chen£©

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dujunchen: ½ð±Ò+10, ¡ï¡ï¡ï¡ï¡ï×î¼Ñ´ð°¸ 2016-03-17 12:28:06
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ccession number:       
20155001654031
        Title:        Progress of the Pd catalysts for methane oxidation under low temperature
        Authors:         Du, Jun-Chen1 Email author junchen.du@spmcatalyst.com; Chang, Shi-Ying1, 2; Huang, Wei-Qiang1; He, Jun-Jun1; Yang, Dong-Xia1, 3; Zhao, Yun-Kun1 Email author yk.zhao@spmcatalyst.com
        Author affiliation:        1 State-Local Joint Engineer Laboratory of Precious Metal Catalytic Technology and Application, Kunming Sino-Platinum Metals Catalysts Co. Ltd., Kunming, China
                2 Faculty of Materials Science and Engineering, Kunming University of Science and Technology, Kunming, China
                3 Faculty of Environmental Science and Engineering, Kunming University of Science and Technology, Kunming, China
        Corresponding author:         Zhao, Yun-Kun (yk.zhao@spmcatalyst.com)
        Source title:        Journal of Molecular Catalysis
        Abbreviated source title:        J. Mol. Catal.
        Volume:        29
        Issue:        5
        Issue date:        October 1, 2015
        Publication year:        2015
        Pages:        482-493
        Language:        Chinese
        ISSN:         10013555
        Document type:        Journal article (JA)
        Publisher:        Science Press
        Abstract:        With the improvement of environmental awareness and increasingly stringent regulations, to reduce the emissions of natural gas vehicles has become a widespread consensus. Catalytic oxidation is considered to be one of the most effective way for the purification of strong greenhouse gas methane which comes from the lean-burn natural gas vehicles. And the Pd based catalysts are the most active ones in oxidation reaction of methane under low temperature. In this thesis, preparation factors of Pd catalysts were reviewed, such as precursors, carriers, additives, preparation method. Factors influence on low-temperature oxidation activity, hydrothermal stability and resistance to sulfur poisoning performance were summarized. The latest development of Pd catalysts were systematically introduced. Based on current technology, new measures for developing low cost and high performance catalysts were raised. © 2015, Science Press. All right reserved.
        Number of references:        68
        Main heading:         Natural gas vehicles
        Controlled terms:         Air purification - Automobiles - Catalyst supports - Catalysts - Catalytic oxidation - Environmental regulations - Gas emissions - Greenhouse gases - Methane - Natural gas - Oxidation - Palladium - Purification - Temperature - Vehicles
        Uncontrolled terms:         Environmental awareness - Exhaust purification - Hydrothermal stabilities - Lean burn - Low temperatures - Low-temperature oxidation - Methane oxidation - Stringent regulations
        Classification code:         451.1 Air Pollution Sources - 454.2 Environmental Impact and Protection - 522 Gas Fuels - 547.1 Precious Metals - 641.1 Thermodynamics - 643 Space Heating, Ventilation and Air Conditioning - 662.1 Automobiles - 802.2 Chemical Reactions - 803 Chemical Agents and Basic Industrial Chemicals - 804 Chemical Products Generally - 804.1 Organic Compounds
        Database:        Compendex
                Compilation and indexing terms, © 2016 Elsevier Inc.
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Accession number:       
20155001654031
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