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-  2019 

有机铁改性玄武岩纤维及其对微生物的附着行为
Impact of basalt fiber modified with ferric oxalate on microorganism adhesion behavior

DOI: 10.13801/j.cnki.fhclxb.20190104.002

Keywords: 玄武岩纤维,有机铁,亲水性,电负性,微生物附着行为
basalt fiber
,ferric oxalate,hydrophilic,electronegativity,microorganism adhesion behavior

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[1]  吴智仁, 彭娇, 吴春笃, 等. 新型生物接触氧化载体及其实验研究[J]. 水处理技术, 2016, 42(1):52-55.WU Z R, PENG J, WU C D, et al. Experimental study of the new type biological contact oxidation carrier[J]. Technology of Water Treatment, 2016, 42(1):52-55(in Chinese).
[2]  JEONG Y, HERMANOWICZ S W, PARK C. Treatment of food waste recycling wastewater using anaerobic ceramic membrane bioreactor for biogas production in mainstream treatment process of domestic wastewater[J]. Water Research, 2017, 123:86-95.
[3]  张运华, 姚丽萍, 徐仕进, 等. 表面处理玄武岩纤维增强水泥基复合材料力学性能[J]. 复合材料学报, 2017, 34(5):1159-1166.ZHANG Y H, YAO L P, XU S J, et al. Mechanical properties of cement matrix composites reinforced with surface treated basalt fibers[J]. Acta Materiae Compositae Sinica, 2017, 34(5):1159-1166(in Chinese).
[4]  ZHANG X, ZHOU X, NI H, et al. Surface modification of basalt fiber, with organic/inorganic composites for biofilm carrier used in wastewater treatment[J]. ACS Sustainable Chemistry & Engineering, 2018, 6(2):2596-2602.
[5]  徐吉成, 张晓颖, 廖敏, 等. 改性玄武岩纤维的制备及其挂膜性能[J]. 复合材料学报, 2018, 35(12):3433-3440.XU J C, ZHANG X Y, LIAO M, et al. Preparation of modified basalt fiber and study on its immobilization effect[J]. Acta Materiae Compositae Sinica, 2018, 35(12):3433-3440(in Chinese).
[6]  GUO K, FREGUIA S, DENNIS P G, et al. Effects of surface charge and hydrophobicity on anodic biofilm formation, community composition, and current generation in bioelectrochemical systems[J]. Environmental Science & Technology, 2013, 47(13):7563-7570.
[7]  晏义伍, 曹海琳, 甘舟. 氧化石墨烯对玄武岩织物/酚醛树脂复合材料性能的影响[J]. 复合材料学报, 2017, 34(12):2702-2707.YAN Y W, CAO H L, GAN Z. Influence of graphene oxide on mechanical properties of basalt fabric reinforced phenolic resin[J]. Acta Materiae Compositae Sinica, 2017, 34(12):2702-2707(in Chinese).
[8]  CAO Y, XING W, PENG C, et al. Preferential adsorption of extracellular polymeric substances from bacteria on clay minerals and iron oxide[J]. Colloids & Surfaces:B Biointerfaces, 2011, 83(1):122-127.
[9]  黄理辉, 马鲁铭, 张波, 等. 铁离子促进悬浮载体挂膜的机理研究[J]. 中国给水排水, 2007, 23(9):106-108.HUANG L H, MA L M, ZHANG B, et al. Study on promotion mechanism of Fe ion for biofilm formation on suspended carrier[J]. China Water and Wastewater, 2007, 23(9):106-108(in Chinese).
[10]  SHARMA P K, RAO K H. Adhesion of Paenibacillus polymyxa on chalcopyrite and pyrite:Surface thermodynamics and extended DLVO theory[J]. Colloids & Surfaces B:Biointerfaces, 2003, 29(1):21-38.
[11]  CHEN Y P, ZHANG P, GUO J S, et al. Functional groups characteristics of EPS in biofilm growing on different carriers[J]. Chemosphere, 2013, 92(6):633-638.
[12]  刘晓涵, 陈永刚, 林励, 等. 蒽酮硫酸法与苯酚硫酸法测定枸杞子中多糖含量的比较[J]. 食品科技, 2009, 34(9):270-272.LIU X H, CHEN Y G, LIN L, et al. Comparison of methods in determination of polysaccharide in Lycium barbarum L.[J]. Food Science and Technology, 2009, 34(9):270-272(in Chinese).
[13]  杨玉芳. 蛋白质含量测定方法[J]. 明胶科学与技术, 2007, 27(2):98-101.YANG Y F. The various methods for determing different proteins[J]. The Science and Technology of Gelatin, 2007, 27(2):98-101(in Chinese).
[14]  DHAND V, MITTAL G, RHEE K Y, et al. A short review on basalt fiber reinforced polymer composites[J]. Composites Part B:Engineering, 2015, 73:166-180.
[15]  WANG G J, LIU Y W, GUO Y J, et al. Surface modification and characterizations of basalt fibers with non-thermal plasma[J]. Surface & Coatings Technology, 2007, 201(15):6565-6568.
[16]  张美兰, 何圣兵, 项颖颖, 等. 生物膜技术原位处理有机污染河道研究[J]. 净水技术, 2009, 28(3):32-35.ZHANG M L, HE S B, XIANG Y Y, et al. Study on treating organic polluted river by biofilm technology in situ[J]. Water Purification Technology, 2009, 28(3):32-35(in Chinese).
[17]  陈佩佩, 邵小青, 郭松杰, 等. 水处理中生物填料的研究进展[J]. 现代化工, 2017, 37(12):38-42.CHEN P P, SHAO X Q, GUO S J, et al. Research progress of biological fillers for wastewater treatment[J]. Modern Chemical Industry, 2017, 37(12):38-42(in Chinese).
[18]  FELFOLDI T, JURECSKA L, VAJNA B, et al. Texture and type of polymer fiber carrier determine bacterial colonization and biofilm properties in wastewater treatment[J]. Chemical Engineering Journal, 2015, 264:824-834.
[19]  LIU Q, ZHANG C, BAO Y, et al. Carbon fibers with a nano-hydroxyapatite coating as an excellent biofilm support for bioreactors[J]. Applied Surface Science, 2018, 443:255-265.
[20]  叶国锐, 晏义伍, 曹海琳. 氧化石墨烯改性玄武岩纤维及其增强环氧树脂复合材料性能[J]. 复合材料学报, 2014, 31(6):1402-1408.YE G R, YAN Y W, CAO H L. Basalt fiber modified with graphene oxide and properties of its reinforced epoxy composites[J]. Acta Materiae Compositae Sinica, 2014, 31(6):1402-1408(in Chinese).
[21]  NI H, ZHOU X, ZHANG X, et al. Feasibility of using basalt fiber as biofilm carrier to construct bio-nest for wastewater treatment[J]. Chemosphere, 2018, 212:768-776.
[22]  XU S, JIANG Q. Surface modification of carbon fiber support by ferrous oxalate for biofilm wastewater treatment system[J]. Journal of Cleaner Production, 2018, 194:416-424.
[23]  ZHAO W, YANG S, HUANG Q, et al. Bacterial cell surface properties:Role of loosely bound extracellular polymeric substances (LB-EPS)[J]. Colloids & Surfaces B:Biointerfaces, 2015, 128:600-607.
[24]  WINFIELD J, IEROPOULOS I, ROSSITER J, et al. Biodegradation and proton exchange using natural rubber in microbial fuel cells[J]. Biodegradation, 2013, 24(6):733-739.
[25]  季四平, 钏永明, 胡学伟, 等. Fe2+、Mn2+对生物膜载体表面改性对微生物的活性及胞外多聚物的影响[J]. 云南民族大学学报(自然科学版), 2018, 27(1):22-26.JI S P, CHUAN Y M, HU X W, et al. Impacts of Fe2+ and Mn2+ modification on biofilm carriers and its impacts on the activities of organisms and EPS[J]. Journal of Yunnan Minzu University (Natural Sciences Edition), 2018, 27(1):22-26(in Chinese).
[26]  YAO H, SUI X, ZHAO Z, et al. Optimization of interfacial microstructure and mechanical properties of carbon fiber/epoxy composites via carbon nanotube sizing[J]. Applied Surface Science, 2015, 347:583-590.
[27]  MATSUMOTO S, OHTAKI A, HORI K. Carbon fiber as an excellent support material for wastewater treatment biofilms[J]. Environmental Science & Technology, 2012, 46(18):10175-10181.

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