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内置转盘式膜-生物反应器处理污水的工艺条件研究
引用本文:吴桂萍,杜春慧,徐又一.内置转盘式膜-生物反应器处理污水的工艺条件研究[J].环境科学,2006,27(11):2217-2221.
作者姓名:吴桂萍  杜春慧  徐又一
作者单位:1. 华中科技大学环境科学研究所,武汉,430074;浙江大学高分子科学与工程系,杭州,310027
2. 浙江大学高分子科学与工程系,杭州,310027
基金项目:国家高技术研究发展计划(863)项目(2002AA601230);国家重点基础研究发展规划(973)项目(2003CB615705)
摘    要:对内置转盘式膜-生物反应器(SRMBR)处理污水工艺进行了研究.进水COD 160~368 mg/L时,出水COD在运行1d后降低到20 mg/L以下,去除率大于90%;转盘式膜组件的转速在0~25 r/min范围内,平衡膜通量随转速增大而快速增加,继续增大转速则平衡膜通量的增加变得不显著;在一定范围(0~1min)内延长停抽时间有助于缓解膜污染;SRMBR在较低的气水比(15∶1)下运行,也可达到较高的平衡膜通量.研究表明,SRMBR在最佳组合操作条件(转速为25r/min,抽/停为9min/1min,气水比为15∶1,抽吸压力为25kPa)下运行,其平衡膜通量高达53.75L/(m2·h).

关 键 词:内置转盘式膜-生物反应器  膜污染  平衡膜通量
文章编号:0250-3301(2006)11-2217-05
收稿时间:2005-10-23
修稿时间:2005-10-232005-12-28

Study on the Process for wastewater treatment in Submerged Rotating Membrane Bioreactor
Wu Gui-Ping,Du Chun-Hui,Xu You-Yi.Study on the Process for wastewater treatment in Submerged Rotating Membrane Bioreactor[J].Chinese Journal of Environmental Science,2006,27(11):2217-2221.
Authors:Wu Gui-Ping  Du Chun-Hui  Xu You-Yi
Institution:Institute of Environmental Science, Huazhong University of Science and Technology, Wuhan 430074, China.
Abstract:The process for wastewater treatment in submerged rotating membrane bioreactor (SRMBR) was studied. It was found that the effluent COD reduced to 20 mg/L after one day running when the influent COD varied from 160 mg/L to 368 mg/L. The equilibrium membrane flux increased rapidly with increasing rotation speed of membrane in the range of 0 to 25r/min. Within one minute, the increase of suspended suction time could alleviate the membrane fouling. Moreover, higher membrane flux could be reached even at lower aeration/water ratio (15:1) in SRMBR process. The optimum processing condition was suggested as follows: the rotation speed was 25r/min, suction time/suspended time was 9 min/1 min, aeration/water ratio was 15/1, and operation pressure was 25kPa. Under this condition, the equilibrium membrane flux could reach 53.75 L/(m2 x h).
Keywords:submerged rotating membrane bioreactor  membrane fouling  equilibrium membrane flux
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