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啶虫脒/木质素两性表面活性剂/膨润土缓释剂的制备及性能
引用本文:侯莲霞,刘彦辉,田金玲,李瑞雪,任世学.啶虫脒/木质素两性表面活性剂/膨润土缓释剂的制备及性能[J].生物质化学工程,2015,49(6):11-16.
作者姓名:侯莲霞  刘彦辉  田金玲  李瑞雪  任世学
作者单位:东北林业大学材料科学与工程学院;生物质材料科学与技术教育部重点实验室, 黑龙江 哈尔滨 150040
基金项目:十二五国家科技支撑计划资助(2012BAD24B0403);东北林业大学2014大学生科研训练项目(KY2014023)
摘    要:以木质素两性表面活性剂二甲基-正丁基-磺化木质素基氯化铵(DBSLAC)为改性剂,钠基膨润土为原料,制备了DBSLAC改性膨润土(L-Bt)。以啶虫脒为药物释放的对象、改性膨润土作为释放的主要载体,利用浸渍负载的方法制备了啶虫脒缓释剂,对制备条件进行了优化,并研究其缓释性能。通过FT-IR表征了样品结构,采用XRD分析了晶体层间距。结果表明:DBSLAC已成功插入膨润土层间,使其层间距增大。啶虫脒缓释剂制备最佳工艺条件为改性膨润土为L-1.2Bt、投加量0.02g、负载时间6h、啶虫脒初始质量浓度500mg/L、溶液pH值6,制得的缓释剂的最大负载量为333mg/g。通过水溶缓释实验探究了药水比例和温度对载药L-1.2Bt的累积释药率的影响,结果表明,累计释药率随水的比例的增加、温度的升高而逐渐上升,最后趋于稳定。

关 键 词:木质素  膨润土  负载  啶虫脒  缓释  
收稿时间:2015-06-08

Preparation and Performance of Hymexazol/Lignin Based Amphoteric Surfactant/Bentonite Slow-release Formulation
HOU Lian-xia,LIU Yan-hui,TIAN Jin-ling,LI Run-xue,REN Shi-xue.Preparation and Performance of Hymexazol/Lignin Based Amphoteric Surfactant/Bentonite Slow-release Formulation[J].Biomass Chemical Engineering,2015,49(6):11-16.
Authors:HOU Lian-xia  LIU Yan-hui  TIAN Jin-ling  LI Run-xue  REN Shi-xue
Affiliation:College of Material Science and Technology, Northeast Forestry University;Key Laboratory of Bio-based Material Science and Technology, Ministry of Education, Harbin 150040, China
Abstract:Lignin based amphoteric surfactant(dimethyl-butyl-sulfonated lignin ammonium chloride, DBSLAC) was used as modification agent to exchange the metal ions among the layers of sodium-based bentonite to prepare modified bentonite(L-Bt). Acetaniprid was selected as the drug for slow-release and loaded on the modified bentonite by means of adsorption, and the slow-release performance was studied. The structure and basal spacing of modified bentonite were analyzed with by FT-IR and XRD. The results showed that the DBSLAC inserted the interlayer of modified bentonite successfully which caused the increase of interlayer distance.The optimum adsorption conditions for acetaniprid slow-release formulation were modified bentonite L-1.2Bt, dosage 0.02g, adsorption time 6h, initial mass concentration of acetaniprid 500mg/L and pH value 6. Under these conditions the maximum loading capacity was 333mg/g. The effects of potion proportion and temperature on the accumulative release rate of L-1.2Bt were studied by water soluble method. With the increase of water content and temperature, the accumulative release rate increased gradually, and finally tended to be stable.
Keywords:lignin  bentonite  load  acetaniprid  slow-release  
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