化工进展
化工進展
화공진전
CHEMICAL INDUSTRY AND ENGINEERING PROGRESS
2014年
5期
1236-1241
,共6页
魏秀珍%李光胜%聂井姣%吕伯昇%项海%陈金媛
魏秀珍%李光勝%聶井姣%呂伯昇%項海%陳金媛
위수진%리광성%섭정교%려백승%항해%진금원
紫外光%马来酸酐%膜%表面%超滤%抗污染性
紫外光%馬來痠酐%膜%錶麵%超濾%抗汙染性
자외광%마래산항%막%표면%초려%항오염성
UV%Maleic anhydride%membrane%surface%ultrafiltration%anti-fouling property
采用紫外光法将马来酸酐(MAH)单体键联到聚丙烯腈(PAN)超滤膜表面,考察了紫外光强度、辐射时间、光敏剂浓度以及单体浓度对MAH反应率的影响。采用衰减全反射-傅里叶红外光谱(ATR/FT-IR)、扫描电镜(SEM)和水接触角(CA)对改性膜和原膜进行表征,结果表明单体MAH已成功键联到PAN膜表面,膜表面的亲水性得到提高。蛋白质静态污染以及超滤实验表明马来酸酐键联改性对PAN膜水通量影响不大,但抗污染性能得到明显提高,且由于MAH含有酸酐基团,使PAN膜的可反应性大大提高,使PAN膜易于进一步改性。
採用紫外光法將馬來痠酐(MAH)單體鍵聯到聚丙烯腈(PAN)超濾膜錶麵,攷察瞭紫外光彊度、輻射時間、光敏劑濃度以及單體濃度對MAH反應率的影響。採用衰減全反射-傅裏葉紅外光譜(ATR/FT-IR)、掃描電鏡(SEM)和水接觸角(CA)對改性膜和原膜進行錶徵,結果錶明單體MAH已成功鍵聯到PAN膜錶麵,膜錶麵的親水性得到提高。蛋白質靜態汙染以及超濾實驗錶明馬來痠酐鍵聯改性對PAN膜水通量影響不大,但抗汙染性能得到明顯提高,且由于MAH含有痠酐基糰,使PAN膜的可反應性大大提高,使PAN膜易于進一步改性。
채용자외광법장마래산항(MAH)단체건련도취병희정(PAN)초려막표면,고찰료자외광강도、복사시간、광민제농도이급단체농도대MAH반응솔적영향。채용쇠감전반사-부리협홍외광보(ATR/FT-IR)、소묘전경(SEM)화수접촉각(CA)대개성막화원막진행표정,결과표명단체MAH이성공건련도PAN막표면,막표면적친수성득도제고。단백질정태오염이급초려실험표명마래산항건련개성대PAN막수통량영향불대,단항오염성능득도명현제고,차유우MAH함유산항기단,사PAN막적가반응성대대제고,사PAN막역우진일보개성。
Maleic anhydride (MAH) was bonded onto the surface of membrane by ultraviolet (UV)-initiated graft to improve the anti-fouling property of polyacrylonitrile (PAN) ultrafiltration membrane. The effect of UV radiation power,irradiation time, initiator and monomer concentrations on the reaction yield were investigated. Attenuated total reflectance Fourier transform infrared spectroscopy (ATR/FT-IR),scanning electron microscopy (SEM) and water contact angle measurement were employed to characterize the structure and the properties of the membranes. The results revealed that MAH monomer had been bonded onto membrane surface successfully and the hydrophilicity of modified membrane was increased. The static protein pollution of membranes and ultrafiltration results were used to evaluate the anti-fouling property of the membranes. The results demonstrated that the water flux did not change obviously after MAH bonding. However, the anti-fouling property of the modified membranes was enhanced obviously. Furthermore , PAN membrane surface was functionalized by anhydride groups in MAH monomer which endowed the membranes with high reactivity.