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201942180CHINASYNTHETICFIBERINDUSTRY2018-09-172018-12-03。1991—。E-mail1042035680@qq.com。2014BAC08B012016YFE0126400BE2016636。*。E-mailtabol@126.com。11211*1.2120132.214214、、、、。64.8%11.32%20℃0.3837min-10.3572min-10.4214min-160.52°。TQ343.41A1001-0042201901-0080-04、、1、、、2。3-4。5。、、6。。7。8、、、。11.1、、、。、。31。1Tab.1Physicalindexoffillers/mm/·m-2/m2·m-3-2530040252479150252600200mm。1.2KBrNicoletNicoletNexus470。Joel-Jem-7001F5min15kV10-3Pa。W2h3500r/min15min105~110℃1h30min。20~25℃。W=m1-m2/m2×100%1m1m2。25±5℃15%±5%、20min。R20℃、65%24h105℃1h0.5h0.1%2h。R=m3-m4/m4×100%2m3m4。20℃KLa20。KLaKLa=2.303tlgCS-C0CS-Ct3CSC0Ctt。20℃KLa209。100L15L/min350%16.5~17.6℃CS9.47~9.72mg/L3。DC-100。22.11800~1400cm-11000cm-1。800cm-1Si—CC—H1260cm-1Si—C101015cm-1Si—O—SiSi—O—C1350cm-1O—H1735cm-1。3000cm-1C—H35003715cm-111。C帯O。1Fig.1Infraredspectrumofmodifiedbasaltfiberfiller2.22C—O—OH12。2SEMFig.2SEMimagesofunmodifiedandmodifiedbasaltfiberfillers181.2.32.3.1W2W64.8%W65.7%24.1%。。2WTab.2WoffillersW%64.865.724.12.3.2360min97%91%46.5%80min200min120min。。3Fig.3Dryingrateoffillers■—●—▲—2.3.3RR。3R11.32%33。。3RTab.3RoffillersR%11.3210.656.732.44KLa20KLa。KLa20。KLa20。。。4Tab.4OxygenationcapacityoffillersKLa20/min-10.33740.38370.35720.42142.590°90°13。4、、60.52°66.72°63.36°390°3。。14。28201942。43Fig.4Contactangleofthreekindsoffillers3a.、SEM。bWR64.8%11.32%。c.15L/min、、KLa200.38370.35720.4214min-1。d.。1.J.20073539-11.2.J.20053067-13.3.J.201538516-20.4SokolinskayaMAZabavaLKTsybulyaTMetal.StrengthpropertiesofbasaltfibersJ.GlassCeram19914810435-437.5.D.2011.6.J.20056144-46.7.J.201540124-28.8.104176822AP.2014-12-03.9.J.2013291981-84.10.J.1995255447-450.11.D.2015.12.SiO2J.2016451015-17.13GaoZhiyongSunWeiHuYuehuaetal.AnisotropysurfacebrokenbondpropertiesandwettabilityofcalciteandfluoritecrystalsEnglishJ.TransNonferrousMetalSocChin20122251203-1208.14.J.201132108-10.PhysicochemicalpropertiesofmodifiedbasaltfiberwatertreatmentfillerXuDawei1XuXiaohong1JiangSuying2WuZhiren1ZhangBo11.SchooloftheEnvironmentandSafetyEngineeringJiangsuUniversityZhenjiang2120132.JiangsuATKInstituteofEnvironmentalEngineeringDesignYixing214214AbstractInordertoexplorethephysicalandchemicalpropertiesofmodifiedbasaltfiberwatertreatmentfillerthestructurewaterabsorptionperformanceoxygenationperformancesurfacefreeenergyandhydrophilicpropertyofbasaltfiberfillerwerestudiedandcomparedwithelasticfillerandcombinedfiller.Theresultsshowedthatthemodifiedbasaltfiberfillercontainedhy-drophilicgroupsandexhibitedroughsurfacethemodifiedbasaltfiberfillerhadtherelativelyhighwatercontentandmoisturere-gainof64.8%and11.32%thedryingratelowerthanthatofelasticfillerandcombinedfillerthemodifiedbasaltfiberfillerhadtheoxygenmasstransfercoefficientof0.3837min-1at20℃higherthanthevalueofcombinedfiller0.3572min-1andlowerthanthevalueofelasticfiller0.4214min-1andthemodifiedbasaltfiberfillershowedthewatercontactangleof60.52°lowerthanthoseofthetwootherfillersandexhibitedthehighestsurfacefreeenergy.Keywordsbasaltfibermodificationwatertreatmentcombinedfillerelasticfillerstructureproperties381.
本文标题:改性玄武岩纤维水处理填料的理化性能分析徐大为
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