文章摘要
赵秋燕,宋箭,伍昌年,方涛,鲍超,孔张成,孙冰香,张睿,杨浩.悬浮填料延缓DMBR膜污染的研究[J].安徽建筑大学学报,2016,24(3):59-62
悬浮填料延缓DMBR膜污染的研究
Study on the Effects of SuspensionPacking on Dynamic Membrane Bioreactor Membrane Fouling
  
DOI:10.11921/j.issn.2095-8382.20160313
中文关键词: 动态膜生物反应器  悬浮填料  膜污染
英文关键词: dynamic membrane bioreactor suspended packing membrane fouling
基金项目:国家水体污染控制与治理科技重大专项课题(2014ZX07405003)
作者单位
赵秋燕 安徽建筑大学水污染控制与废水资源化安徽省重点实验室安徽合肥230601 
宋箭 安徽建筑大学水污染控制与废水资源化安徽省重点实验室安徽合肥230601 
伍昌年 安徽建筑大学水污染控制与废水资源化安徽省重点实验室安徽合肥230601 
方涛 安徽建筑大学水污染控制与废水资源化安徽省重点实验室安徽合肥230601 
鲍超 安徽建筑大学水污染控制与废水资源化安徽省重点实验室安徽合肥230601 
孔张成 安徽建筑大学水污染控制与废水资源化安徽省重点实验室安徽合肥230601 
孙冰香 安徽建筑大学水污染控制与废水资源化安徽省重点实验室安徽合肥230601 
张睿 安徽建筑大学水污染控制与废水资源化安徽省重点实验室安徽合肥230601 
杨浩 安徽建筑大学水污染控制与废水资源化安徽省重点实验室安徽合肥230601 
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中文摘要:
      采用两组平行动态膜生物反应器(DMBR)处理模拟生活污水,对比研究投加悬浮填料对DMBR中污泥混合液特性、胞外聚合物(EPS)及膜污染的影响。投加和未投加悬浮填料的反应器分别记为反应器A、B。实验结果表明:运行期间,反应器A混合液中污泥浓度、Zeta电位降低与粘度增加程度、膜通量衰减及膜阻力增大速度均小于反应器B,且Zeta电位与蛋白质含量呈强负向相关、而粘度与多糖含量呈强正向相关。由反应器A、B膜基材的扫描电镜可直观地看出,未投加悬浮填料的膜表面沉积大量的污染物,致使膜孔堵塞;而投加悬浮填料的膜表面污染物较少,抗污染性能明显有所改善。在DMBR中投加悬浮填料有利于延缓膜污染。
英文摘要:
      Two paralleled dynamic membrane bioreactor (DMBR) were employed to treat simulation of sewage, and the effect of sludge mixture characteristic, extracellular polymers (EPS) and membrane fouling with the addition of suspension packing were studied. Reactors (with and without suspension packing ) were named as reactor A and B. It was shown thatreactor A was lower than reactor B in MLSS, Zeta potential decline, sludgeviscosity increase, membrane flux decline and transmembrane pressure increaseduring operation. The content of protein had positive correlation with Zeta potential, and the content of polysaccharide had negative correlation with viscosity. Scanning electron microscopy (SEM) of nylon fabric in two reactors showedthe membrane surface without suspension packing deposited pollutants, the film hole were blocked. And less pollutantsin the membrane surface added suspension packing, pollution resistance was improved significantly. It could be concluded thatsuspension packing has positive effects on controlling membrane fouling.
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