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OXYREACTIVITY OF CARBON SURFACE OXIDES

机译:碳表面氧化物的异化性

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The behavior of carbon surface oxides formed in ~(18)O_2 and exposed subsequently to ~(16)O_2 has been studied by mass spectrometric determination of the gaseous products which include all the possible isotopic forms of CO and CO_2. In addition, the oxides remaining on the surface of the carbon have been characterized by temperature-programmed desorption (TPD) to yield CO. The experiments were conducted at a total pressure of 2.7 Pa at temperatures of 873, 973, and 1073 K. Both the transient kinetic experiments and the TPD studies point to the occurrence of a reaction between surface-bound oxides and gas-phase oxygen to gasify carbon and at the same time create new surface oxide. The overall reaction proceeds as C(~(18)O) + ~(16)O_2→ C(~(16)O) + C~(18)O, C~(16)O~(18)O (R3) but the precise stoichiometry remains unknown. The kinetics of reaction R3 have been studied as a function of the characteristic energy for decomposition of the surface complexes (E_(des)), in the range 280 < E_(des) < 420 kJ mol~(-1). The pseudo-first-order rate constant for the reaction in 2.7 Pa O_2 is found to be essentially independent of E_(des). The activation energy for the reaction over the temperature range 873 < T < 1073 is 34 kJ mol~(-1). The contribution of reaction R3 to the overall rate of gasification of the carbon under the experimental conditions ranges from 45% at 873 to 4% at 1073 K.
机译:在〜(18)O_2中形成的碳表面氧化物的行为并随后通过质谱法测定气态产品的质谱法测定包含所有可能的同位素形式的CO和CO_2。另外,剩余的氧化物在碳表面上的特征在于,通过温度编程的解吸(TPD)来产生Co.在873,973和1073k的温度下,在2.7Pa的总压力下进行实验瞬态动力学实验和TPD研究指向表面结合氧化物和气相氧气之间的反应,以气化碳,同时产生新的表面氧化物。总反应作为C(〜(18)o)+〜(16)O_2→C(〜(16))+ C〜(18)O,C〜(16)O〜(18)O(R3)但精确的化学计量仍然未知。已经研究了反应R3的动力学作为用于分解表面络合物的特性能量(E_(DES))的功能,在280

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