功能静电纺纤维材料
上QQ阅读APP看本书,新人免费读10天
设备和账号都新为新人

参考文献

[1]GRAFE T,GRAHAM K. Polymeric nanofibers and nanofiber webs:a new class of nonwovens,INTC,2002[C].Georgia:International Nonwovens Technical Conference,2002.

[2]HUANG Z M,ZHANG Y Z,KOTAKI M,et al. A review on polymer nanofibers by electrospinning and their applications in nanocomposites[J].Composites Science&Technology,2003,63(15):2223-2253.

[3]HOLZMEISTER A,RUDISILE M,GREINER A,et al. Structurally and chemically heterogeneous nanofibrous nonwovens via electrospinning[J].European Polymer Journal,2007,43(12):4859-4867.

[4]MA G X,WANG J N,YU F et al. An assessment of the potential health benefits of realizing the goals for PM10the updated Chinese ambient air quality standard[J].Frontiers of Environmental Science&Engineering,2016,10(2):288-298.

[5]WU J,WANG N,ZHAO Y,et al. Electrospinning of multilevel structured functional micro-/nanofibers and their applications[J].Journal of Materials Chemistry A,2013,1(25):7290-7305.

[6]WATANABE T,TOCHIKUBO F,KOIZURNI Y,et al. Submicron particle agglomeration by an electrostatic agglomerator[J].Journal of Electrostatics,1995,34(4):367-383.

[7]王华,刘艳飞,彭东明,等.膜分离技术的研究进展及应用展望[J].应用化工,2013,42(3):532-534.

[8]LIU C,HSU P C,LEE H W,et al. Transparent air filter for high-efficiency PM2.5capture[J].Nature Communications,2015,6,6205.

[9]王洋,曲华,莫丹.核孔膜孔径测量和过滤效果研究[J].核技术,2016,39(1):34-38.

[10]ZHU M,HAN J,WANG F,et al. Electrospun nanofibers membranes for effective air filtration[J].Macromolecular Materials&Engineering,2016,302(1),600353.

[11]BOGNITZKI M,CZADO W,FRESE T,et al. Nanostructured fibers via electrospinning[J].Advanced Materials,2001,13(1):70-72.

[12]ARDKAPAN S R,JOHNSON M S,YAZDI S,et al. Filtration efficiency of an electrostatic fibrous filter:studying filtration dependency on ultrafine particle exposure and composition[J].Journal of Aerosol Science,2014,72(3):14-20.

[13]CHAE S J. The long-term performance of electrically charged filters in a ventilation system[J].Journal of Occupational&Environmental Hygiene,2004,1(7):463-471.

[14]丁彬,俞建勇.静电纺丝与纳米纤维[M].北京:中国纺织出版社,2011.

[15]Christopher M,Long H,Suh P. Characterization of indoor particle sources using continuous mass and size monitor[J].Journal of the Air&Waste Management Association,2000,50(7):1236-1250.

[16]Lance W,Cynthia H. Continuous monitoring of ultrafine,fine and coarse particles in a riverside for 18 months in 1999-2000[J].Journal of the Air&Waste Management Association,2002,52(7):828-844.

[17]Kaur S,Sundarrajan S,et al. Review:the characterization of electrospun nanofibrous liquid filtration membranes[J].Journal of Materials Science,2014,49(18):6143-6159.

[18]SHOU D,YE L,FAN J. Gas transport properties of electrospun polymer nanofibers[J].Polymer,2014,55(14):3149-3155.

[19]STACHEWICZ U,STONE C A,WILLIS C R,et al. Charge assisted tailoring of chemical functionality at electrospun nanofiber surfaces[J].Journal of Materials Chemistry,2012,22(43):22935-22941.

[20]蔡杰.空气过滤ABC[M].北京:中国建筑工业出版社,2002.

[21]许钟麟.空气洁净技术原理[M].北京:科学出版社,2014.

[22]WAN H,NA W,YANG J,et al. Hierarchically structured polysulfone/titania fibrous membranes with enhanced air filtration performance[J].Journal of Colloid&Interface Science,2014,417(3):18-26.

[23]NEIVA A C B,JR L G. A procedure for calculating pressure drop during the build-up of dust filter cakes[J].Chemical Engineering&Processing Process Intensification,2003,42(6):495-501.

[24]KANAOKA C,EMI H,OTANI Y,et al. Effect of Charging State of Particles on Electret Filtration[J].Aerosol Science&Technology,1987,7(1):1-13.

[25]CHEN C Y. Filtration of aerosols by fibrous media[J].Chemical Reviews,1955,55(3):595-623.

[26]WALSH D C. Recent advances in the understanding of fibrous filter behaviour under solid particle load[J].Filtration&Separation,1996,33(6):501-506.

[27]PAYATAKES A C,GRADOŃ L.Dendritic deposition of aerosol particles in fibrous media by inertial impaction and interception[J].Chemical Engineering Science,1980,35(5):1083-1096.

[28]HOUI D,LENORMAND R. Particle Deposition on a filter medium[J].Kinetics of Aggregation&Gelation,1984,173-176.

[29]ZHAO X,WANG S,YIN X,et al. Slip-effect functional air filter for efficient purification of PM2.5[J].Scientific Reports,2016,6,35472.

[30]LI P,WANG C,ZHANG Y,et al. Air filtration in the free molecular flow regime:a review of high‐efficiency particulate air filters based on carbon nanotubes[J].Small,2014,10(22):4543-4561.

[31]GAD-EL-HAK M. The fluid mechanics of microdevices-the freeman scholar lecture[J].Asme Journal of Fluids Engineering,1999,121(1):5-33.

[32]TAITEL Y,DUKLER A E. A model for predicting flow regime transitions in horizontal and near horizontal gas‐liquid flow[J].Aiche Journal,1976,22(1):47-55.

[33]LI Y,ZHU Z,YU J,et al. Carbon nanotubes enhanced fluorinated polyurethane macroporous membranes for waterproof and breathable application[J].ACS Applied Materials&Interfaces,2015,7(24):13538-13546.

[34]MIKHEEV A Y,SHLYAPNIKOV Y M,KANEV I L,et al. Filtering and optical properties of free standing electrospun nanomats from nylon-4,6[J].European Polymer Journal,2016,75:317-328.

[35]WANG N,SI Y,WANG N,et al. Multilevel structured polyacrylonitrile/silica nanofibrous membranes for high-performance air filtration[J].Separation&Purification Technology,2014,126(15):44-51.

[36]SI Y,REN T,LI Y,et al. Fabrication of magnetic polybenzoxazine-based carbon nanofibers with Fe3O4inclusions with a hierarchical porous structure for water treatment[J].Carbon,2012,50(14):5176-5185.

[37]LI B,CAO H,SHAO J,et al. Enhanced anode performances of the Fe3O4-carbon-rGO three dimensional composite in lithium ion batteries[J].Chemical Communications,2011,47(37):10374-10376.

[38]LAMB G E R,COSTANZA P A. Influences of fiber geometry on the performance of nonwoven air filters:part II:fiber diameter and crimp frequency[J].Textile Research Journal,1979,50(2):79-87.

[39]HOSSEINI S A,TAFRESHI H V. On the importance of fibers'cross-sectional shape for air filters operating in the slip flow regime[J].Powder Technology,2011,212(3):425-431.

[40]FOTOVATI S,TAFRESHI H V,POURDEYHIMI B. Analytical expressions for predicting performance of aerosol filtration media made up of trilobal fibers[J].Journal of Hazardous Materials,2011,186(2-3):1503-1512.

[41]HOSSEINI S A,TAFRESHI H V. Modeling particle filtration in disordered 2-D domains:A comparison with cell models[J].Separation&Purification Technology,2010,74(2):160-169.

[42]WANG N,RAZA A,SI Y,et al. Tortuously structured polyvinyl chloride/polyurethane fibrous membranes for high-efficiency fine particulate filtration[J].Journal of Colloid and Interface Science,2013,398(19):240-246.

[43]LIN J,TIAN F,SHANG Y,et al. Facile control of intra-fiber porosity and inter-fiber voids in electrospun fibers for selective adsorption[J].Nanoscale,2012,4(17):5316-5320.

[44]ABBASIPOUR M,KHAJAVI R. Nanofiber bundles and yarns production by electrospinning:A review[J].Advances in Polymer Technology,2014,32(3):1158-1168.

[45]HU J,WANG X,DING B,et al. One‐step electro‐spinning/netting technique for controllably preparing polyurethane nano‐fiber/net[J].Macromolecular Rapid Communications,2011,32(21):1729-1734.

[46]ZHANG S,HUI L,XIA Y,et al. Anti-deformed polyacrylonitrile/polysulfone composite membrane with binary structures for effective air filtration[J].ACS Applied Materials&Interfaces,2016,8(12):8086.

[47]WANG N,ZHU Z,SHENG J,et al. Superamphiphobic nanofibrous membranes for effective filtration of fine particles[J].Journal of Colloid and Interface Science,2014,428:41-48.

[48]LI P,ZONG Y,ZHANG Y,et al. In situ fabrication of depth-type hierarchical CNT/quartz fiber filters for high efficiency filtration of sub-micron aerosols and high water repellency[J].Nanoscale,2013,5(8):3367-3372.

[49]LI X,WANG N,FAN G,et al. Electreted polyetherimide-silica fibrous membranes for enhanced filtration of fine particles[J].Journal of Colloid and Interface Science,2015,439:12-20.

[50]张传文,严玉蓉.PVDF静电纺纤维毡表面电性能[J].纺织学报,2010,31(5):10-14.

[51]CATALANI L H,COLLINS G,JAFFE M. Evidence for molecular orientation and residual charge in the electrospinning of poly(butylene terephthalate)nanofibers[J].Macromolecules,2007,40(5):1693-1697.

[52]NILS M,HANSWERNER S,PER M,et al. Influence of chemical structure and solubility of bisamide additives on the nucleation of isotactic polypropylene and the improvement of its charge storage properties[J].Macromolecules,2006,39(17):5760-5767.

[53]LIU L,LV F,LI P,et al. Preparation of ultra-low dielectric constant silica/polyimide nanofiber membranes by electrospinning[J].Composites Part A:Applied Science&Manufacturing,2016,84:292-298.

[54]SAXENA P,GAUR M S. Thermally stimulated depolarization study in polyvinylidenefluoride‐polysulfone polyblend films[J].Journal of Applied Polymer Science,2010,118(6):3715-3722.

[55]GARG M,QUAMARA J K. Multiple relaxation processes in high-energy ion irradiated kapton-H polyimide:Thermally stimulated depolarization current study[J].Nuclear Inst&Methods in Physics Research B,2006,246(2):355-363.

[56]QUAMARA J K,SINGH N,SINGH A. Study of dielectric relaxation processes in poly(p-phenylene sulfide)using a thermally stimulated discharge current technique[J].Macromolecular Chemistry&Physics,2001,202(9):1955-1960.

[57]YANG D,BAI W,WU Z,et al. PVDF/SiO2hybrid composite electret films and effects[C].Shanghai:9th International Symposium on Electrets,1996.

[58]HOLSTEIN P,LEISTER N,WEBER U,et al. A combined study of polarization effects in PVDF[C].Athens:10th International Symposium on Electrets,1999.

[59]JIANG P,ZHAO X,LI Y,et al. Moisture and oily molecules stable nanofibrous electret membranes for effectively capturing PM2.5[J].Composites Communication,2017,6:34-40.

[60]LEUNG W F,HUNG C H,YUEN P T. Effect of face velocity,nanofiber packing density and thickness on filtration performance of filters with nanofibers coated on a substrate[J].Separation&Purification Technology,2010,71(1):30-37.

[61]BARAKAT N A M,KANJWAL M A,SHEIKH F A,et al. Spider-net within the N6,PVA and PU electrospun nanofiber mats using salt addition:novel strategy in the electrospinning process[J].Polymer,2009,50(18):4389-4396.

[62]ZHANG S,CHEN K,YU J,et al. Model derivation and validation for 2D polymeric nanonets:origin,evolution,and regulation[J].Polymer,2015,74(9):182-192.

[63]R. SAHAY C J T,CHEW Y T.New correlation formulae for the straight section of the electrospun jet from a polymer drop[J].Journal of Fluid Mechanics,2013,735:150-175.

[64]BROWN P J,STEVENS K. Nanofibers and Nanotechnology in Textiles[M].Holland:Elsevier,2007.

[65]JAWOREK A,KRUPA A. Classification of the modes of ehd spraying[J].Journal of Aerosol Science,1999,30(7):873-893.

[66]DAYAL P,KYU T. Porous fiber formation in polymer-solvent system undergoing solvent evaporation[J].Journal of Applied Physics,2006,100,043512.

[67]DAYAL P,KYU T. Dynamics and morphology development in electrospun fibers driven by concentration sweeps[J].Physics of Fluids,2007,19:107106.

[68]IZUMI Y,MIYAKE Y. Study of linear poly(p-chlorostyrene)-diluent systems.I.solubilities,phase relationships,and thermodynamic interactions[J].Polymer Journal,1972,3(6):647-662.

[69]WANG N,WANG X,DING B,et al. Tunable fabrication of three-dimensional polyamide-66 nano-fiber/nets for high efficiency fine particulate filtration[J].Journal of Materials Chemistry,2011,22(4):1445-1452.

[70]LIU B,ZHANG S,WANG X,et al. Efficient and reusable polyamide-56 nanofiber/nets membrane with bimodal structures for air filtration[J].Journal of Colloid&Interface Science,2015,457:203-211.

[71]ZHANG S,LIU H,YIN X,et al. Tailoring mechanically robust poly(m-phenylene isophthalamide)nanofiber/nets for ultrathin high-efficiency air filter[J].Scientific Reports,2017,7,40550.

[72]ZHANG S,TANG N,CAO L,et al. Highly integrated polysulfone/polyacrylonitrile/polyamide-6 air filter for multi-level physical sieving airborne particles[J].ACS Applied Materials&Interfaces,2016,8(42):29062-29072.

[73]WHITAKER S. Flow in porous media I:A theoretical derivation of Darcy's law[J].Transport in Porous Media,1986,1(1):3-25.

[74]CHOONG L T,KHAN Z,RUTLEDGE G C. Permeability of electrospun fiber mats under hydraulic flow[J].Journal of Membrane Science,2014,451(1):111-116.

[75]WANG N,YANG Y,ALDEYAB S S,et al. Ultra-light 3D nanofibre-nets binary structured nylon 6-polyacrylonitrile membranes for efficient filtration of fine particulate matter[J].Journal of Materials Chemistry A,2015,3(47):23946-23954.

[76]YANG Y,ZHANG S,ZHAO X,et al. Sandwich structured polyamide-6/polyacrylonitrile nanonets/bead-on-string composite membrane for effective air filtration[J].Separation&Purification Technology,2015,152:14-22.

[77]ZHANG S,LIU H,YU J,et al. Microwave structured polyamide-6 nanofiber/net membrane with embedded poly(m-phenylene isophthalamide)staple fibers for effective ultrafine particle filtration[J].Journal of Materials Chemistry A,2016,4(16):6149-6157.

[78]ZHANG S,LIU H,ZUO F,et al. A controlled design of ripple-like polyamide-6 nanofiber/nets membrane for high-efficiency air filter[J].Small,2017,1603151.

[79]ZUO F,ZHANG S,LIU H,et al. Free‐standing polyurethane nanofiber/nets air filters for effective PM capture[J].Small,2017,1702139.

[80]ZHAO X,LI Y,HUA T,et al. Cleanable air filter transferring moisture and effectively capturing PM2.5[J].Small,2017,1603306.

[81]WOOD R A,JOHNSON E F,VAN NATTA M L,et al. A placebo-controlled trial of a HEPA air cleaner in the treatment of cat allergy[J].American Journal of Respiratory&Critical Care Medicine,1998,158(1):115-120.

[82]HUA T,LI Y,ZHAO X,et al. Stable low resistance air filter under high humidity endowed by self-emission far-infrared for effective PM2.5capture[J].Composites Communications,2017,6:29-33.

[83]SALISBURY J W,WALD A,D'ARIA D M. Thermal‐infrared remote sensing and Kirchhoff's law:1.laboratory measurements[J].Journal of Geophysical Research Solid Earth,1994,99(B6):11897-11911.

[84]季君晖,史维明.抗菌材料[M].北京:化学工业出版社,2004.

[85]SI Y,ZHANG Z,WU W,et al. Daylight-driven rechargeable antibacterial and antiviral nanofibrous membranes for bioprotective applications[J].Science Advances,2018,4(3):eaar5931.

[86]NAKANE H,ASAMI O,YAMADA Y,et al. Effect of negative air ions on computer operation,anxiety and salivary chromogranin A-like immunoreactivity[J].International Journal of Psychophysiology,2002,46(1):85-89.

[87]KONDRASHOVE M N,GRIGORENKO E V,TIKHONOV A V,et al. The primary physico-chemical mechanism for the beneficial biological/medical effects of negative air ions[J].IEEE Transactions on Plasma Science,2000,28(1):230-237.

[88]NIMMERICHTER A,HOLDHAUS J,MEHNEN L,et al. Effects of negative air ions on oxygen uptake kinetics,recovery and performance in exercise:a randomized,double-blinded study[J].International Journal of Biometeorology,2014,58(7):1503-1512.

[89]ZHAO X,LI Y,HUA T,et al. Low-resistance dual-purpose air filter releasing negative ions and effectively capturing PM2.5[J].ACS Applied Materials&Interfaces,2017,9(13):12054-12063.

[90]MAO X,BAI Y,YU J,et al. Flexible and highly temperature resistant polynanocrystalline zirconia nanofibrous membranes designed for air filtration[J].Journal of the American Ceramic Society,2016,99(8):2760-2768.