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首页> 外文期刊>International Journal of Photoenergy >Laboratory-scale photomineralization ofn-alkanes in gaseous phase by photocatalytic membranes immobilizing titanium dioxide
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Laboratory-scale photomineralization ofn-alkanes in gaseous phase by photocatalytic membranes immobilizing titanium dioxide

机译:通过固定二氧化钛的光催化膜对气相中的烷烃进行实验室规模的光矿化

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Kinetics of photocatalytic oxidation of methane, ethane, andn-heptane, to yield intermediates, and photomineralization of intermediates, to yield carbon dioxide and water, was studied in the gaseous phase, at308±2K, by a laboratory-scale photoreactor and photocatalytic membranes immobilizing30±3wt.% of TiO2, in the presence of aerosolized stoichiometric hydrogen peroxide as oxygen donor, and at a relative humidity close to 100%. The whole volume of irradiated solution was4.000±0.005L, the ratio between this volume and the geometrical apparent surface of the irradiated side of the photocatalytic membrane was3.8±0.1cm, and the absorbed power was 0.30 W/cm (cylindrical geometry). The pinetic parameters of the present work substantially coincide with those of the same molecules previously studied in aqueous solution, within the limits of experimental uncertainty. Photocatalytic processes thus appear to be controlled by interface phenomena, which are ruled kinetically, and apparently also thermodynamically, by concentration gradients, independently on diffusion and other processes in the aqueous or gaseous bulk, if turbulence in these phases is adequately assured.
机译:通过实验室规模的光反应器和固定化的光催化膜,在308±2K的气相中研究了甲烷,乙烷和正庚烷的光催化氧化反应以生成中间体以及中间体的光矿化以生成二氧化碳和水的动力学。在雾化的化学计量的过氧化氢作为氧气供体的情况下,在相对湿度接近100%的条件下,可得到±3wt。%的TiO2。辐照溶液的总体积为4.000±0.005L,该体积与光催化膜辐照侧的几何表观表面的比为3.8±0.1cm,吸收功率为0.30 W / cm(圆柱形) )。在实验不确定性的范围内,本研究工作的纵向参数与先前在水溶液中研究的相同分子的纵向参数基本一致。因此,如果充分确保了在这些相中的湍流,则光催化过程似乎受界面现象控制,该界面现象由浓度梯度独立地决定于动力学或明显地也是由热力学地由浓度梯度决定,而与水或气态本体中的扩散和其他过程无关。

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