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首页> 外文期刊>RSC Advances >Advanced removal of toluene in aerosol by adsorption and photocatalytic degradation of silver-doped TiO2/PU under visible light irradiation
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Advanced removal of toluene in aerosol by adsorption and photocatalytic degradation of silver-doped TiO2/PU under visible light irradiation

机译:在可见光照射下通过吸附和光催化降解银掺杂TiO2 / PU的吸附和光催化降解在气溶胶中高级除去甲苯

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We synthesized a novel Ag–TiO _(2) /PU material for the effective removal of gaseous toluene by both adsorption and photocatalytic degradation. The Ag particles, which were distributed on the TiO _(2) surface, and the Ag dopants, which were incorporated into the TiO _(2) lattice, increased the electron–hole pair separation efficiency of TiO _(2) . Therefore, Ag–TiO _(2) /PU exhibited high photocatalytic degradation of toluene even under visible light. Porous polyurethane (PU) was used to immobilize the enhanced TiO _(2) , to increase the adsorption capacity of the photocatalyst. The synthesized Ag–TiO _(2) /PU removed gaseous toluene even under dark conditions via adsorption. The removal of gaseous toluene by Ag–TiO _(2) /PU under visible light conditions was due to the combination of both adsorption and photocatalytic degradation. The oxygen content in the gas stream insignificantly affected the toluene adsorption by the Ag–TiO _(2) /PU. However, the photocatalytic degradation of toluene by Ag–TiO _(2) /PU increased with increasing oxygen content and stabilized when the oxygen content exceeded 15%. These results suggest that ambient air can be used economically as an oxygen source for the photocatalytic degradation of gaseous toluene by Ag–TiO _(2) /PU under visible light conditions. Under visible light irradiation, 6% Ag–TiO _(2) /PU, which was the Ag/TiO _(2) ratio that optimized the photocatalytic degradation activity of TiO _(2) , removed 85.2% of the toluene in 100 ppm inlet gas, of which 90.3% was mineralized into CO _(2) and H _(2) O.
机译:通过吸附和光催化降解合成一种新的Ag-TiO _(2)/ PU材料,用于通过吸附和光催化降解有效地除去气态甲苯。分布在TiO _(2)表面上的Ag颗粒,以及掺入TiO _(2)格中的Ag掺杂剂,增加了TiO _(2)的电子 - 空穴对分离效率。因此,即使在可见光下,Ag-TiO _(2)/ PU也表现出高光催化降解甲苯。多孔聚氨酯(PU)用于固定增强的TiO _(2),以增加光催化剂的吸附能力。即使通过吸附在暗条件下,合成的Ag-TiO _(2)/ PU也除去了气态甲苯。通过Ag-TiO _(2)/ PU在可见光条件下除去气态甲苯是由于吸附和光催化降解的组合。气流中的氧含量不显着影响Ag-TiO _(2)/ pu的甲苯吸附。然而,通过Ag-TiO _(2)/ PU通过增加氧含量的甲苯的光催化降解随着氧含量的增加,并且当氧含量超过15%时稳定。这些结果表明,在可见光条件下通过Ag-TiO_(2)/ PU通过Ag-TiO _(2)/ PU,可以经济地使用环境空气作为用于光催化降解气态甲苯的氧气源。在可见光照射下,6%Ag-TiO _(2)/ PU,其是优化TiO _(2)的光催化降解活性的Ag / TiO _(2)的比例,除以100ppm的85.2%的甲苯入口气体,其中90.3%被矿化成CO _(2)和H _(2)O.

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