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首页> 外文期刊>Catalysis Letters >Preparation of Carbon Nanotubes (CNTs)-Cordierite Monoliths by Catalytic Chemical Vapor Deposition as Catalyst Supports for Ammonia Synthesis
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Preparation of Carbon Nanotubes (CNTs)-Cordierite Monoliths by Catalytic Chemical Vapor Deposition as Catalyst Supports for Ammonia Synthesis

机译:催化化学气相沉积作为氨合成的催化剂载体制备碳纳米管-堇青石整料

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Tunable carbon nanotubles (CNTs)-coated monoliths as catalyst supports were prepared by catalytic chemical vapor deposition (CCVD) over deposited cobalt on cordierite. The influence of the preparation conditions such as the cobalt nitrate loading on the cordierite monoliths, the flow rate of reaction gases, reaction time and temperature on CNTs yield, thermal properties and structural features of the resulting materials were studied. The CNTs-cordierite was characterized by TEM/HREM, SEM, N2 physisorption and TGA. The SEM showed that a relatively homogeneous mesoporous layer of CNTs covered on the surface of the cordierite monoliths. Comparing with the bare cordierite, the BET surface area and pore volume of CNTs-cordierite increased significantly. CNTs have penetrated into the cordierite substrate and led to a remarkable mechanical stability of the CNTs-cordierite monoliths against ultrasound maltreatment. The CNTs content, BET surface area, pore volume and thermal properties of CNTs-cordierite monoliths all could be changed by the variation of the synthesis conditions. Barium promoted ruthenium catalysts supported on the as-synthesized materials showed much higher activity for ammonia synthesis than their counterparts deposited on bare cordierite monoliths. Furthermore, the catalytic activity linearly increased with the BET surface area of CNTs-cordierite monoliths. The CNTs-cordierite monoliths were proved to be promising candidates as catalyst supports and the performance of catalysts supported on as-prepared materials would be easily modified by changing the growth conditions of CNTs.
机译:通过在堇青石上沉积的钴上进行催化化学气相沉积(CCVD),制备了可调谐碳纳米管(CNTs)包覆的整料作为催化剂载体。研究了硝酸钴负载量对堇青石整体结构,反应气体流量,反应时间和温度等制备条件的影响,进而影响了碳纳米管的收率,热性能和结构特征。通过TEM / HREM,SEM,N2物理吸附和TGA对CNT堇青石进行了表征。 SEM显示,堇青石整料的表面上覆盖有相对均匀的CNT的中孔层。与裸露的堇青石相比,CNTs-堇青石的BET表面积和孔体积显着增加。 CNT渗透到堇青石基材中,并导致CNT堇青石整料具有卓越的机械稳定性,可防止超声波虐待。通过改变合成条件,可以改变碳纳米管-堇青石整料的碳纳米管含量,BET表面积,孔体积和热性能。负载在合成后的材料上的钡促进的钌催化剂对氨合成的活性比沉积在裸露的堇青石整料上的对应物高得多。此外,催化活性随CNTs-堇青石整料的BET表面积线性增加。事实证明,碳纳米管-堇青石整料是有前途的催化剂载体,通过改变碳纳米管的生长条件,可以很容易地改变负载在制备好的材料上的催化剂的性能。

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