Research Institute for Environmental Management Technology, National Institute of Advanced Industrial Science and Technology (AIST), 16-1, Onogawa, Tsukuba, Ibaraki 305-8569, Japan.
J Hazard Mater. 2010 May 15;177(1-3):274-80. doi: 10.1016/j.jhazmat.2009.12.029. Epub 2010 Jan 4.
The aim of our study is to develop apparatuses that use TiO(2) for effective decontamination of air contaminated by Sarin gas. We performed photocatalytic decomposition of gaseous dimethyl methylphosphonate (DMMP) by TiO(2) and identified the oxidization products. The high activity of TiO(2) (0.01 g) was observed under UV-light irradiation and high concentration DMMP (33.5 microM) was removed rapidly. On the other hand, DMMP was not decreased under UV-light irradiation without TiO(2). This indicates that photocatalytic treatment is very effective for the removal of DMMP. Methanol, formaldehyde, formic acid, methyl formate, CO, CO(2) and H(2)O were detected as the primary products. In the gas phase, no highly poisonous substances were detected. In order to examine the performance of photocatalytic activity during long-term reactions, we performed photocatalytic decomposition by repeated-batch reactions using TiO(2). High photocatalytic activities decreased gradually. Meanwhile, the strong adsorption of TiO(2) against DMMP was observed as photocatalytic activities decreased. During the repeated-batch reactions with the sample scaled up (TiO(2): 0.1g), the total amount of removed DMMP reached 968.5 microM by both photocatalytic decomposition and the strong adsorption of TiO(2). These results suggest the possibility of removing large amounts of DMMP.
我们研究的目的是开发利用 TiO(2) 有效净化沙林气体污染空气的设备。我们通过 TiO(2) 进行了气态二甲氧基甲基膦酸酯 (DMMP) 的光催化分解,并鉴定了氧化产物。在紫外光照射下,TiO(2)(0.01 g)表现出高活性,快速去除了高浓度 DMMP(33.5 microM)。另一方面,没有 TiO(2) 时,DMMP 没有在紫外光照射下减少。这表明光催化处理对于去除 DMMP 非常有效。甲醇、甲醛、甲酸、甲酸甲酯、CO、CO(2) 和 H(2)O 被检测为主要产物。在气相中,未检测到高毒性物质。为了检验长时间反应中光催化活性的性能,我们使用 TiO(2) 进行了重复批次反应的光催化分解。高光催化活性逐渐降低。同时,随着光催化活性的降低,观察到 TiO(2) 对 DMMP 的强烈吸附。在放大的样品(TiO(2):0.1g)的重复批次反应中,通过光催化分解和 TiO(2) 的强烈吸附总共去除了 968.5 microM 的 DMMP。这些结果表明了去除大量 DMMP 的可能性。