环境科学与管理
環境科學與管理
배경과학여관리
Environmental Science and Management
2015年
10期
97-101
,共5页
淀粉%凹凸棒黏土%复合吸附絮凝材料%制备%表征
澱粉%凹凸棒黏土%複閤吸附絮凝材料%製備%錶徵
정분%요철봉점토%복합흡부서응재료%제비%표정
starch%attapulgite%adsorbent and flocculent composite%preparation%characterization
采用接枝聚合法在硅烷化凹凸棒粘土(OATP)表面接枝淀粉,制备淀粉/凹凸棒粘土(ATP)复合吸附絮凝材料.采用傅里叶变换红外光谱(FT-IR)、扫描电子显微镜(SEM)对淀粉/ATP进行了表征,并对其制备条件进行了优化.结果表明,当淀粉质量分数(相对OATP质量)为100%,聚合反应时间为3 h,引发剂质量分数为0.003%,反应温度为60℃时,制备的淀粉/ATP对镉离子的最大吸附容量可达到36.78 mg/g.与ATP、OATP相比,淀粉/ATP对镉离子的吸附容量增大了2倍以上.复合材料具有比OATP更强的捕获能力,所形成的絮凝体大而密实,比淀粉絮凝剂具有更好的沉降性能.
採用接枝聚閤法在硅烷化凹凸棒粘土(OATP)錶麵接枝澱粉,製備澱粉/凹凸棒粘土(ATP)複閤吸附絮凝材料.採用傅裏葉變換紅外光譜(FT-IR)、掃描電子顯微鏡(SEM)對澱粉/ATP進行瞭錶徵,併對其製備條件進行瞭優化.結果錶明,噹澱粉質量分數(相對OATP質量)為100%,聚閤反應時間為3 h,引髮劑質量分數為0.003%,反應溫度為60℃時,製備的澱粉/ATP對鎘離子的最大吸附容量可達到36.78 mg/g.與ATP、OATP相比,澱粉/ATP對鎘離子的吸附容量增大瞭2倍以上.複閤材料具有比OATP更彊的捕穫能力,所形成的絮凝體大而密實,比澱粉絮凝劑具有更好的沉降性能.
채용접지취합법재규완화요철봉점토(OATP)표면접지정분,제비정분/요철봉점토(ATP)복합흡부서응재료.채용부리협변환홍외광보(FT-IR)、소묘전자현미경(SEM)대정분/ATP진행료표정,병대기제비조건진행료우화.결과표명,당정분질량분수(상대OATP질량)위100%,취합반응시간위3 h,인발제질량분수위0.003%,반응온도위60℃시,제비적정분/ATP대력리자적최대흡부용량가체도36.78 mg/g.여ATP、OATP상비,정분/ATP대력리자적흡부용량증대료2배이상.복합재료구유비OATP경강적포획능력,소형성적서응체대이밀실,비정분서응제구유경호적침강성능.
Graft polymerization, starch/attapulgite( ATP) adsorbent was synthesized by grafting starch onto the silane coupling reagent modified ATP( OATP).The preparing conditions of the starch/ATP were investigated, and the analysis by FT/IR and SEM were conducted to characterize the synthesized starch/ATP.Fourier transform infrared spectroscopy( FT-IR) , scanning e-lectron microscopy( SEM) of starch/ATP were characterized and optimized its preparation conditions.The results show that the prepared starch/ATP gives a maximum Cd2+ adsorption capacity of 36.78 mg·g-1 under following conditions:starch mass con-centration of 100.0%( relative to OATP mass, the same hereinafter) , reaction time of 3 h, initiator dosage of 0.003%( weight) and reaction temperature of 60℃.It was found that the Cd2+ adsorption capacity of the Starch/ATP prepared under the above con-ditions is more than 2 folds compared with those of the ATP and OATP.The captured ability of the composite material is better than OATP, forming large and dense flocs, its settlement capacity is superior to starch flocculants.