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聚乙烯醇缩甲醛/纳米凹凸棒土微生物固定化载体的制备与性能 被引量:1

Preparation and Property of PVFM/Attapulgite Carrier for Microorganism Immobilization
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摘要 以硅烷偶联剂KH560改性的纳米凹凸棒土作为纳米无机填料,用悬浮共聚法制备了多孔亲水性的聚乙烯醇缩甲醛/纳米凹凸棒土复合材料。考察了纳米凹凸棒土的用量与复合材料物理性能及孔结构的关系。将其做为微生物固定化载体用于污水处理,对比普通活性污泥法,考察了该材料的微生物固定化载体效果。研究表明,当纳米凹凸棒土填充量为6 g/100 g时,复合材料的表观密度为76.8 kg/m3,吸水率14.92 g/g,孔隙率为96.5%。该载体对污水的CODCr和NH3-N的平均去除率均比普通活性污泥反应器分别高出20%和11%,具有较好的微生物固定化效果。 A porous and hydrophilic nanocomposites of poly (vinyl formal) (PVFM)/ nan0-attapulgite were prepared by suspension copolymerization, in which inorganic fillers were nano-attapulgite modified by silane coupling agent KH560. The effects of nano-attapulgite' s contents on the physical property and pore structure of the nanocomposites were studied. Then this nanocomposites were used as microorganism immobilization carrier to treat wastewater in comparision with conventional activated sludge process. The study shows that when the cintent of nano-attapulgite is 6g/100g, the nanocomposites' apparent density drops to 76.8 kg/m3, water absorption rate significantly improves to 14.92 g/g, and porosity is 96.5%. PVFM/nano-attapulgite has excellent microorganism immobilization capability. PVFM/attapulgite shows 20 % and 11% increase in the average rate of CODcr and NH3-N to compared to conventional activated sludge.
出处 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2012年第7期140-143,共4页 Polymer Materials Science & Engineering
基金 甘肃省自然科学基金资助项目(1112RJZA047)
关键词 纳米凹凸棒土 聚乙烯醇缩甲醛 纳米复合材料 微生物固定化载体 污水处理 nano-attapulgite PVFM nanocomposites microorganism immobilization carrier wastewater treatment
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  • 1Karel S F, Libicki S B, Robertson C R. The imnbilization of whole cells: engineering principles [J ]. Chemical Engineering Science, 1985, 40(8): 1321-1354.
  • 2de-Bashan L E, Bashan Y. Immobilized microalgae for removing pollutants: review of practical &speets[J]. Bioresource Technology, 2010,101(6) : 1611-1627.
  • 3白雪,周林成,李彦锋,杨柳青.聚乙烯醇载体制备及其固定化微生物处理污水研究进展[J].离子交换与吸附,2010,26(4):377-384. 被引量:8
  • 4Bai X, Ye Z F, Li Y F, et al . Preparation of crosslinked macroporous PVA foam carrier for immobilization of microorganisms [J]. Process Bioehca-nistry, 2010,45(1) : 60-66.
  • 5Bradley W F. The structural scheme of attapulgite[J]. American Mineralogist, 1940, 25 (6) : 405-410.
  • 6Wang L, Sheng J. Preparation and properties of polypropylene/org- attapulgite nano-eomposites [J ]. Polymer, 2005, 46 (16) : 6243- 6249.
  • 7陈天虎.凹凸棒石粘土吸附废水中污染物机理探讨[J].高校地质学报,2000,6(2):265-270. 被引量:84
  • 8Chen H, Wang A Q. Kinetic and isothermal studies of lead ion adsorption onto palygorskite clay[J]. J. Colloid Interf. Sci., 2007, 307(2) : 309-316.
  • 9国家环保局.水和废水检测标准[M].北京:环境科学出版社,1989:354-356,295-299.

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