Isaka Kazuichi, Udagawa Makiko, Kimura Yuya, Sei Kazunari, Ike Michihiko
Matsudo Research Center, Infrastructure System Company, Hitachi, Ltd., 537 Kami-hongo, Matsudo, Chiba 271-0064, Japan.
Matsudo Research Center, Infrastructure System Company, Hitachi, Ltd., 537 Kami-hongo, Matsudo, Chiba 271-0064, Japan.
J Biosci Bioeng. 2016 Feb;121(2):203-8. doi: 10.1016/j.jbiosc.2015.06.006. Epub 2015 Jul 11.
A biological treatment system for 1,4-dioxane-containing wastewater was developed using the bacterium Afipia sp. D1, which can utilize 1,4-dioxane as the sole carbon source. Strain D1 was entrapped in a polyethylene glycol gel carrier to stably maintain it in a bioreactor, and continuous feeding tests were performed to treat model industrial wastewater containing 1,4-dioxane. 1,4-Dioxane removal activity rapidly increased soon after the start of feeding of influent with 400 mg/L 1,4-dioxane, and the volumetric removal rate reached 0.67 kg dioxane/m(3)/d on day 36 by a stepwise increase in loading. The start-up period of the 1,4-dioxane treatment reactor was approximately 1 month, and stable removal performance was subsequently achieved for more than 1 month. The average 1,4-dioxane effluent concentration and 1,4-dioxane removal efficiency were 3.6 mg/L and 99%, respectively, during stable operation. Further 1,4-dioxane degradation activity of the of the gel carrier was characterized in batch experiments with respect to temperature. The optimum temperature for 1,4-dioxane treatment was 31.7°C, and significant removal was observed at a temperature as low as 6.9°C. The apparent activation energy for 1,4-dioxane degradation was estimated to be 47.3 kJ/mol. This is the first report of the development of a 1,4-dioxane biological treatment system using gel entrapment technology.
利用能将1,4-二氧六环作为唯一碳源的阿菲波菌属(Afipia sp.)D1菌株,开发了一种用于处理含1,4-二氧六环废水的生物处理系统。将D1菌株包埋在聚乙二醇凝胶载体中,以在生物反应器中稳定维持该菌株,并进行连续进料试验来处理含1,4-二氧六环的模拟工业废水。在开始进料含400 mg/L 1,4-二氧六环的进水后,1,4-二氧六环去除活性迅速增加,通过逐步提高负荷,在第36天容积去除率达到0.67 kg二氧六环/m³/d。1,4-二氧六环处理反应器的启动期约为1个月,随后在1个多月的时间里实现了稳定的去除性能。在稳定运行期间,1,4-二氧六环的平均出水浓度和去除效率分别为3.6 mg/L和99%。在分批实验中对凝胶载体的1,4-二氧六环进一步降解活性进行了温度方面的表征。1,4-二氧六环处理的最佳温度为31.7°C,在低至6.9°C的温度下也观察到显著去除。1,4-二氧六环降解的表观活化能估计为47.3 kJ/mol。这是首次报道利用凝胶包埋技术开发1,4-二氧六环生物处理系统。