Wu Jinhua, Chen Guocai, Gu Jingjing, Yin Weizhao, Lu Mengxiong, Li Ping, Yang Bo
Key Laboratory of Environmental Protection and Eco-Remediation of Guangdong Regular Higher Education Institutions; Key Laboratory of Pollution Control and Ecosystem Restoration in Industry Clusters, Ministry of Education, China; School of Environment and Energy, South China University of Technology, Guangzhou, 510006, China,
Environ Sci Pollut Res Int. 2014 Nov;21(22):12800-10. doi: 10.1007/s11356-014-3225-9. Epub 2014 Jun 28.
Sequential upflow anaerobic filter (UAF)/air lift (ALR) reactors were employed to investigate the effects of hydraulic retention time (HRT) and nitrobenzene (NB) concentration on treatment of NB-containing wastewater. The results showed that NB was effectively reduced to aniline (AN) with glucose as co-substrate in the UAF reactor. The AN and the remaining intermediates after the UAF reactor were then efficiently degraded in the ALR reactor. A removal efficiency of 100% and 96% was obtained for NB and chemical oxygen demand (COD), respectively, using sequential UAF/ALR reactors with an HRT of 8-72 h in the UAF reactor and 2-18 h in the ALR reactor. The corresponding optimal influent NB concentration varied between 100 and 400 mg l(-1) to achieve the optimal NB and COD removal. The NB removal efficiency decreased to 90% and to 97% if the HRT in the UAF reactor decreased from 8 to 2 h and the influent NB concentration increased from 400 to 800 mg l(-1), respectively. The results showed that sequential UAF/ALR system can be operated at low HRTs and high NB concentrations without significantly affecting the removal efficiency of NB in the reactor system. The UAF/ALR system can provide an effective yet low cost method for treatment of NB-containing industrial wastewater.
采用序批式上流式厌氧滤池(UAF)/气升式反应器(ALR)研究水力停留时间(HRT)和硝基苯(NB)浓度对含NB废水处理效果的影响。结果表明,在UAF反应器中,以葡萄糖作为共底物时,NB能有效还原为苯胺(AN)。然后,UAF反应器后的AN及其他中间产物在ALR反应器中被高效降解。在UAF反应器的HRT为8 - 72小时、ALR反应器的HRT为2 - 18小时的序批式UAF/ALR反应器中,NB和化学需氧量(COD)的去除率分别达到100%和96%。为实现NB和COD的最佳去除效果,相应的最佳进水NB浓度在100至400 mg l(-1)之间变化。若UAF反应器中的HRT从8小时降至2小时,进水NB浓度从400 mg l(-1)增至800 mg l(-1),NB的去除率将分别降至90%和97%。结果表明,序批式UAF/ALR系统可在低HRT和高NB浓度下运行,且不会显著影响反应器系统中NB的去除效率。UAF/ALR系统可为含NB工业废水的处理提供一种有效且低成本的方法。