Tsuchida Akihiro, Oshimo Koji, Horikoshi Satoshi
Department of Materials and Life Sciences, Faculty of Science and Technology, Sophia University.
Microwave Science Research Center (MSRC), Sophia University.
J Oleo Sci. 2018 Jul 1;67(7):917-924. doi: 10.5650/jos.ess18031. Epub 2018 Jun 12.
Decomposition of urea in aqueous solution was carried out using a microwave discharge electrodeless lamp (MDEL) consisting of two photoreactors with a triple tube structure that generate vacuum-UV/UV light and reactive oxygen species (ROS) using microwaves (MW) as an energy source. The rate of decomposition of urea was highest under acidic conditions (pH 4) compared with those at pH 7 and 10. When used in combination with dispersed TiO, a photocatalyst, high decomposition efficiency was achieved with less power consumption. Moreover, decomposition efficiency more than two times higher than that of ozone oxidation and sodium hypochlorite oxidation could be realized.
使用由两个具有三管结构的光反应器组成的微波放电无电极灯(MDEL),以微波(MW)作为能量源产生真空紫外线/紫外线光和活性氧(ROS),对水溶液中的尿素进行分解。与pH值为7和10时相比,尿素在酸性条件(pH 4)下的分解速率最高。当与光催化剂分散的TiO结合使用时,以较低的功耗实现了高分解效率。此外,可实现比臭氧氧化和次氯酸钠氧化高出两倍以上的分解效率。