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第 9 期                   李   奔,等:  自组装低负载量 Pd/γ-Al 2 O 3 催化剂催化氧化甲苯                       ·1561·


                 homogeneous and heterogeneous catalysts [J]. J Mol Catal A-Chem,   [30]  Chen J, Zhang Q H, Wang Y, et al. Size-dependent catalytic activity
                 2004, 219(1): 121–130.                            of supported  palladium nanoparticles for aerobic oxidation  of
            [24]  Fu X R, Liu Y,  Yao  W Y,  et  al.  One-step synthesis of bimetallic   alcohols [J]. Adv Synth Catal, 2008, 350(3): 453–464.
                 Pt-Pd/MCM-41 mesoporous materials with superior catalytic   [31]  Slavinskaya E M, Stonkus O A, Gulyaev R V, et al. Structural and
                 performance for toluene oxidation [J]. Catal Commun,  2016, 83:   chemical states  of palladium in Pd/Al 2O 3 catalysts under
                 22–26.                                            self-sustained oscillations in reaction of CO oxidation [J]. Appl Catal
            [25]  Hosseini M, Siffert S, Tidahy H L, et al. Promotional effect of gold   A, 2011, 401(1/2): 83–97.
                 added to palladium supported on a new  mesoporous TiO 2 for total   [32]  Zhang G J,  Wang Y E,  Wang X,  et  al. Preparation of Pd-Au/C
                 oxidation of volatile organic compounds [J]. Catal Today, 2007,   catalysts with different alloying degree  and their electrocatalytic
                 122(3/4): 391–396.                                performance for formic  acid oxidation [J]. Appl Catal  B, 2011,
            [26]  Qiao N L, Li Y, Li N, et al. High performance Pd catalysts supported   102(3/4): 614–619.
                 on bimodal mesopore silica for the catalytic oxidation of toluene [J].   [33]  Cheekatamarla P K, Lane  A M. Efficient bimetallic catalysts for
                 Chin J Catal, 2015, 36: 1686–1693.                hydrogen generation from diesel fuel [J]. Int J Hydrogen Energy,
            [27]  Rooke J C, Barakat T, Siffert S,  et al. Total catalytic oxidation  of   2005, 30(11): 1277–1285.
                 toluene using Pd impregnated on hierarchically porous Nb 2O 5 and   [34]  Ferrer V, Moronta A, Sánchez J,  et  al. Effect of the reduction
                 Ta 2O 5 supports [J]. Catal Today, 2012, 192(1): 183–188.     temperature on the catalytic  activity  of Pd-supported catalysts [J].
            [28]  Li J H, Ao P, Li X Q, et al. Removal of volatile organic compounds   Catal Today, 2005, 107/108: 487–492.
                 at low temperature by a self-Assembled Pt/γ-Al 2O 3 catalyst [J]. Acta   [35]  Lieske H, Volter J. Pd redispersion by spreading of PdO in O 2 treated
                 Phys-Chim Sin, 2015, 31(1): 173–180.              Pd/Al 2O 3 [J]. J Phys Chem, 1985, 89: 1841–1842.
            [29]  Briot P, Primet M. Catalytic oxidation of methane over palladium   [36]  Tang X L, Zhang B C, Li Y, et al. Structural features and catalytic
                 supported on alumina: Effect of aging under reactants [J]. Appl Catal   properties of Pt/CeO 2 catalysts prepared by modified  reduction-
                 B, 1991, 68(1): 301–314.                          deposition techniques [J]. Catal Lett, 2004, 97(3/4): 163–169.


            (上接第 1554 页)                                       [27]  Shukla S R,  Harad A M, Jawale  L S. Chemical recycling of PET
                                                                   waste into hydrophobic textile dyestuffs[J]. Polymer Degradation and
            [16]  Lv L H, Zhao Y P, Jiang Z, et al. Methods to separate polyester/wool
                 blended  fabric[J]. Advanced Materials Research, 2012, 518-523:   Stability, 2009, 94(4): 604-609.
                 3408-3411.                                    [28]  Singh R, Singh N, Fabbrocino F,  et al. Waste  management by
            [17] Zhao Mingyu (赵明宇), Zhang Chenxi (张晨曦), Zhao Guoliang (赵  recycling of  polymers with reinforcement of metal  powder[J].
                 国樑 ),  et al.  Circulation glycolysis process of post-consumer   Composites, Part B: Engineering, 2016, 105: 23-29.
                 polyester/cotton blend fabrics [J]. China Synthetic Fiber Industry (合  [29]  Sinha V, Patel M R, Patel J V. Pet waste management by chemical
                 成纤维工业), 2016, 2(1): 15-18.                        recycling: A review[J]. Journal of Polymers and the Environment,
            [18]  Kong Fanrong (孔繁荣), Jia Lin  (贾琳), Chen Lina (陈莉娜).   2008, 18(1): 8-25.
                 Thermal performance analysis of high shrinkage polyester [J].   [30]  Lu Yifei (路怡斐), Wu Zhiyun (武志云), Wang Shaopeng (汪少朋),
                 Shanghai Textile Technology (上海纺织科技), 2017, (3): 42-44.   et al. Ethylene glycol separation and recovery of waste  polyester/
            [19]  Kusumattaqiin F, Chonkaew W. Preparation and characterization of   cotton blended fabrics [J]. Polyester Industry (聚酯工业), 2014, (4):
                 microcrystalline cellulose (MCC)  by acid hydrolysis using   21-24.
                 microwave assisted  method from cotton wool[J]. Macromolecular   [31]  Avci A, Saha  B  C, Kennedy G J,  et al. High temperature dilute
                 Symposia, 2015, 354(1): 35-41.                    phosphoric acid pretreatment of corn stover for furfural and ethanol
            [20]  Lv F, Yao  D, Wang Y, et al. Recycling of waste nylon 6/spandex   production[J]. Industrial Crops and Products, 2013, 50: 478-484.
                 blended fabrics by melt processing[J]. Composites Part B, 2015, 77:   [32]  Pan Lianjun (潘莲君), Chen Weilai (陈慰来), Tang Jibin (唐喆彬),
                 232-237.                                          et al. Thermal performance of high-grade automobile column
            [21]  Shakeri A R, Imani M, Miraki F. Preparation and characterization of   upholstery material polyester [J]. Journal of Zhejiang University of
                 Microcrystalline cellulose (MCC) and Nano crystalline cellulose   Technology (浙江理工大学学报), 2011, 28(2): 201-203.
                 (NCC) from cotton stem[J]. Iranian Journal of Wood & Paper   [33]  Abatzoglou N, Chornet E, Belkacemi K,  et al. Phenomenological
                 Science Research, 2015.                           kinetics  of complex systems: the development of a generalized
            [22]  Li X J, Li W X, Li S R, et al. Rapid detection of polyester content of   severity parameter and its application to lignocellulosics fractionation
                 waste polyester/cotton blended fabric by portable near-Infrared   [J]. Chemical Engineering Science, 1992, 47(5): 1109-1122.
                 spectrometer[J]. Journal of Analytical Science, 2016, 32(6): 800-804.   [34]  Saeman J F. Kinetics of wood saccharification: Hydrolysis of
            [23]  Saha B C, Yoshida T, Cotta M A, et al. Hydrothermal pretreatment   cellulose and decomposition  of sugars in dilute acid at high
                 and enzymatic saccharification of corn stover for efficient ethanol   temperature[J]. Ind Eng Chem, 1945, 37(1): 43-52.
                 production[J]. Industrial Crops and Products, 2013, 44: 367-372.   [35]  Gholamzad E, Karimi K, Masoomi M. Effective conversion of waste
            [24]  Zhang L, Chen G, Tang H, et al. Preparation and characterization of   polyester–cotton textile to ethanol and recovery of polyester by
                 composite membranes of polysulfone and microcrystalline cellulose[J].   alkaline pretreatment[J]. Chemical Engineering Journal,  2014, 253:
                 Journal of Applied Polymer Science, 2009, 112(1): 550-556.   40-45.
            [25]  Xiao Z, Ge Q, Xing C,  et al. Self-reducing bifunctional   [36]  Wang S, Wei M,  Xu Q.  The study  on the generation of porous
                 Ni-W/SBA-15 catalyst for cellulose hydrogenolysis to  low carbon   carbonaceous microspheres from waste  cotton fabric[J].  Journal of
                 polyols[J]. Journal of Energy Chemistry, 2016, 25(3): 434-444.   the Textile Institute, 2016, 108(5): 750-754.
            [26]  Wu M, Zhao  D, Pang J,  et al. Separation and characterization of   [37]  Wang S, Wei M, Xu Q, et al. Functional porous carbons from waste
                 lignin  obtained by catalytic hydrothermal pretreatment  of cotton   cotton fabrics for dyeing wastewater purification[J]. Fibers &
                 stalk[J]. Industrial Crops and Products, 2015, 66: 123-130.   Polymers, 2016, 17(2): 212-219.
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