功能材料
功能材料
공능재료
JOURNAL OF FUNCTIONAL MATERIALS
2015年
15期
15129-15132,15137
,共5页
李倩%杨项项%朱靖%徐龙宇%何娟%魏宏亮%楚晖娟
李倩%楊項項%硃靖%徐龍宇%何娟%魏宏亮%楚暉娟
리천%양항항%주정%서룡우%하연%위굉량%초휘연
三元共聚高吸油树脂%β-环糊精%吸油性能%保油率
三元共聚高吸油樹脂%β-環糊精%吸油性能%保油率
삼원공취고흡유수지%β-배호정%흡유성능%보유솔
the ternary copolymer high oil absorption resin%β-cyclodextrin%oil absorbency%oil retention rate
将单取代烯烃引入到β-环糊精(β-CD)外腔,使之成为空腔内外均具亲油性、且含有可聚合双键的活性大单体(β-CD-A);选取软单体丙烯酸十六酯(HDA)、硬单体苯乙烯与β-CD-A 配伍,经悬浮共聚制备出了含环糊精基三元共聚高吸油树脂—PCDHS.论文探讨了β-CD-A 用量、软硬单体配比、交联剂用量等对树脂吸油性能的影响,并确定了最佳工艺.结果表明,PCDHS 高吸油树脂对汽油、甲苯、氯仿和四氯化碳的吸油倍数分别达到25.6,37.2,45.3和54.6 g/g,保油率高达90%以上.
將單取代烯烴引入到β-環糊精(β-CD)外腔,使之成為空腔內外均具親油性、且含有可聚閤雙鍵的活性大單體(β-CD-A);選取軟單體丙烯痠十六酯(HDA)、硬單體苯乙烯與β-CD-A 配伍,經懸浮共聚製備齣瞭含環糊精基三元共聚高吸油樹脂—PCDHS.論文探討瞭β-CD-A 用量、軟硬單體配比、交聯劑用量等對樹脂吸油性能的影響,併確定瞭最佳工藝.結果錶明,PCDHS 高吸油樹脂對汽油、甲苯、氯倣和四氯化碳的吸油倍數分彆達到25.6,37.2,45.3和54.6 g/g,保油率高達90%以上.
장단취대희경인입도β-배호정(β-CD)외강,사지성위공강내외균구친유성、차함유가취합쌍건적활성대단체(β-CD-A);선취연단체병희산십륙지(HDA)、경단체분을희여β-CD-A 배오,경현부공취제비출료함배호정기삼원공취고흡유수지—PCDHS.논문탐토료β-CD-A 용량、연경단체배비、교련제용량등대수지흡유성능적영향,병학정료최가공예.결과표명,PCDHS 고흡유수지대기유、갑분、록방화사록화탄적흡유배수분별체도25.6,37.2,45.3화54.6 g/g,보유솔고체90%이상.
Introducing the mono substituted olefin to the external cavity,theβ-cyclodextrin derivative became a lipophilic active macromerβ-CD-A containing polymerizable bounds.Selection of soft monomer hexadecyl acry-late (HDA),and hard monomer styrene andβ-CD-A,the suspension copolymerization prepared copolymer high oil absorption resin PCDHS with cyclodextrin based three component copolymer.The impact ofβ-CD-A dosage, the ratio of soft/hard monomer,crosslinking agent on the properties of resins,and determine the best process. Were discussed in this paper.The results showed that the oil absorption ratio of PCDHS,the high oil absorbing resin on gasoline,toluene,chloroform and CCl4 were respectively 25.6,37.2,45.3 and 54.6 g/g,the oil reten-tion rate is as high as 90%.