首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Photocatalytic decolorization and mineralization of malachite green in an aqueous suspension of titanium(IV) oxide nano-particles under aerated conditions: correlation between some physical properties and their photocatalytic activity
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Photocatalytic decolorization and mineralization of malachite green in an aqueous suspension of titanium(IV) oxide nano-particles under aerated conditions: correlation between some physical properties and their photocatalytic activity

机译:充气条件下氧化钛(IV)纳米颗粒水悬浮液中孔雀石绿的光催化脱色和矿化:一些物理性质与其光催化活性之间的关系

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摘要

Titanium(IV) oxide (TiO_2) nano-particles with various physical properties, which had been prepared by hydrothermal crystallization in organic media (HyCOM) and post-calcination, were used for photocatalytic decomposition of malachite green (MG) in an aqueous suspension under aerated conditions. The amount of MG adsorbed on TiO_2 ([MG]_(ad)) increased as the surface area of HyCOM TiO_2 increased. The apparent initial rate constant of pseudo zero-order kinetics, k_0, for decolorization of MG in an early stage (~15 min) coincided well with [MG]_(ad), indicating that adsorptivity is a decisive factor for the initial bleaching of MG. However, in a 1h irradiation experiment, a HyCOM sample with a smaller [MG]_(ad) but improved crystallinity exhibited higher decolorization activity than did HyCOM TiO_2 with the largest [MG]_(ad), suggesting that this reaction process includes deactivation of the photocatalyst due to deposition of intermediate(s) that had been formed by degradation of MG. Longer irradiation was required for mineralization of MG. Total organic carbon (TOC) in the suspension of HyCOM TiO_2 with improved crystallinity continuously decreased whereas TOC in Degussa P-25 TiO_2 did not decrease any more after 5h of irradiation, although one-third of the initial TOC still remained in the suspension.
机译:通过在有机介质(HyCOM)中水热结晶和后煅烧制备的具有各种物理性质的氧化钛(IV_2)纳米粒子用于水悬浮液中孔雀石绿(MG)的光催化分解。充气条件。随着HyCOM TiO_2表面积的增加,吸附在TiO_2([MG] _(ad))上的MG的数量增加。 MG早期(〜15分钟)脱色的拟零级动力学的表观初始速率常数k_0与[MG] _(ad)吻合得很好,表明吸附性是MG初始漂白的决定性因素。 MG。但是,在1h照射实验中,[MG] _(ad)较小但结晶度提高的HyCOM样品比具有最大[MG] _(ad)的HyCOM TiO_2表现出更高的脱色活性,表明该反应过程包括失活由于由于MG降解而形成的一种或多种中间体的沉积,导致光催化剂数量减少。 MG矿化需要更长的照射时间。结晶度提高的HyCOM TiO_2悬浮液中的总有机碳(TOC)持续降低,而Degussa P-25 TiO_2的辐照5h后总有机碳不再降低,尽管初始TOC的三分之一仍保留在悬浮液中。

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