Liu Hai-Long, Jiao Ru-Yuan, Zhao Xia, Wang Rui-Jun
School of Environmental Sciences and Resources, Shanxi University, Taiyuan 030006, China.
Huan Jing Ke Xue. 2011 Mar;32(3):699-704.
The anionic surfactant sodium dodecyl benzene sulfonate (SDBS) is employed as the target pollutant; the SDBS degradation in the processes of ozone (O3), activated carbon (AC) and activated carbon catalytic ozonation were studied. The impact of natural organic matter (NOMs) on the degradation of SDBS by catalytic ozonation was also investigated. Results show that: SDBS removal by using activated carbon catalytic ozonation is higher than that of using single ozonation or AC adsorption respectively; and the most effective time is the early 20 min when the concentrations of ozone and SDBS are relatively high. In the first 5 min (general hydraulic retention time), SDBS removals of the ozonation and AC adsorption were only about 17% and 12.2%, respectively; while the removal of catalytic ozonation reached 54.2% which was much more than the total removal of single ozonation and single adsorption, which showed significant efficiency of the catalytic ozonation. The mechanism of catalytic ozonation involves more radicals could be generated by ozone with the presence of AC; or much higher concentrations of both ozone and reactant would achieve, which enhances the reaction efficiency. Compared with the raw AC, AC experienced relatively long time and high concentration ozone treatment showed little effects on its decomposition efficiency of SDBS during catalytic ozonation. NOMs in the water samples decreased SDBS removals by catalytic ozonation; but the removals kept high under relatively low NOMs concentrations.
以阴离子表面活性剂十二烷基苯磺酸钠(SDBS)作为目标污染物,研究了臭氧(O₃)、活性炭(AC)及活性炭催化臭氧化过程中SDBS的降解情况。同时考察了天然有机物(NOMs)对催化臭氧化降解SDBS的影响。结果表明:活性炭催化臭氧化对SDBS的去除率分别高于单独臭氧氧化和活性炭吸附;最有效的时间是在最初的20分钟,此时臭氧和SDBS的浓度相对较高。在前5分钟(一般水力停留时间),臭氧氧化和活性炭吸附对SDBS的去除率分别仅约为17%和12.2%;而催化臭氧化的去除率达到54.2%,远高于单独臭氧氧化和单独吸附的总去除率,显示出催化臭氧化的显著效率。催化臭氧化的机理包括在活性炭存在下臭氧可产生更多自由基;或者可实现更高浓度的臭氧和反应物,从而提高反应效率。与原始活性炭相比,经过较长时间和高浓度臭氧处理的活性炭在催化臭氧化过程中对SDBS的分解效率影响不大。水样中的NOMs降低了催化臭氧化对SDBS的去除率;但在相对较低的NOMs浓度下,去除率仍保持较高水平。