厦门大学学报(自然科学版)
廈門大學學報(自然科學版)
하문대학학보(자연과학판)
JOURNAL OF XIAMEN UNIVERSITY (NATURAL SCIENCE)
2010年
1期
139-143
,共5页
蓝洪桥%张蕾%庄吴勇%吴正举%苏玉忠%李军
藍洪橋%張蕾%莊吳勇%吳正舉%囌玉忠%李軍
람홍교%장뢰%장오용%오정거%소옥충%리군
超临界抗溶剂雾化%微粒%壳聚糖
超臨界抗溶劑霧化%微粒%殼聚糖
초림계항용제무화%미립%각취당
SAS-A%micronization%chitosan
以超临界抗溶剂雾化技术(SAS-A)从壳聚糖的乙醇水溶液中制备壳聚糖微粒,探讨预膨胀压力、溶液流量和浓度等工艺参数对微粒粒径和粒径分布的影响.结果表明,以超临界CO_2流体为介质,预膨胀温度为50 ℃的条件下,采用SAS-A技术能制备得到壳聚糖球形微粒.通过改变操作条件可以控制微粒形态和大小:增大预膨胀压力,微粒平均粒径先增大,后稍减小;8 MPa下微粒分布最均匀;增大溶液流量或增大溶液中壳聚糖的浓度,微粒粒径变大,粒径分布变宽;升高溶液中乙醇的体积分数,易形成球形微粒;增大喷嘴直径,微粒粒径稍变大,分布更均匀.在研究的操作条件下获得的壳聚糖微粒粒径大小主要在0.5~5.0 μm之间.红外分析表明壳聚糖微粒化前后,结构没有明显变化.
以超臨界抗溶劑霧化技術(SAS-A)從殼聚糖的乙醇水溶液中製備殼聚糖微粒,探討預膨脹壓力、溶液流量和濃度等工藝參數對微粒粒徑和粒徑分佈的影響.結果錶明,以超臨界CO_2流體為介質,預膨脹溫度為50 ℃的條件下,採用SAS-A技術能製備得到殼聚糖毬形微粒.通過改變操作條件可以控製微粒形態和大小:增大預膨脹壓力,微粒平均粒徑先增大,後稍減小;8 MPa下微粒分佈最均勻;增大溶液流量或增大溶液中殼聚糖的濃度,微粒粒徑變大,粒徑分佈變寬;升高溶液中乙醇的體積分數,易形成毬形微粒;增大噴嘴直徑,微粒粒徑稍變大,分佈更均勻.在研究的操作條件下穫得的殼聚糖微粒粒徑大小主要在0.5~5.0 μm之間.紅外分析錶明殼聚糖微粒化前後,結構沒有明顯變化.
이초림계항용제무화기술(SAS-A)종각취당적을순수용액중제비각취당미립,탐토예팽창압력、용액류량화농도등공예삼수대미립립경화립경분포적영향.결과표명,이초림계CO_2류체위개질,예팽창온도위50 ℃적조건하,채용SAS-A기술능제비득도각취당구형미립.통과개변조작조건가이공제미립형태화대소:증대예팽창압력,미립평균립경선증대,후초감소;8 MPa하미립분포최균균;증대용액류량혹증대용액중각취당적농도,미립립경변대,립경분포변관;승고용액중을순적체적분수,역형성구형미립;증대분취직경,미립립경초변대,분포경균균.재연구적조작조건하획득적각취당미립립경대소주요재0.5~5.0 μm지간.홍외분석표명각취당미립화전후,결구몰유명현변화.
Supercritical fluid antisolvent-atomization(SAS-A)process was employed to prepare chitosan microparticles by using supercritical CO_2 at the pre-expansion temperature of 50 ℃ from its water-ethanol solution.The process conditions such as pre-expansion pressure,solution flow rate,chitosan concentration in solution,ethanol volume fraction in solution and the nozzle size were investigated.The effects of these conditions on the particle morphology,size and size distribution were evaluated.Results showed that spherical chitosan particles with mean sizes of 0.5~5.0 μm could be produced by the SAS-A process except the case at high chitosan concentration. Increase of the pre-expansion pressure could first increase the particle size then decrease the particle size.At 8 MPa,chitosan particles with the narrowest particle size distribution could be obtained.Increase of the chitosan concentration in solution or the solution flow rate could increase the particle size and broaden the particle size distribution.Increase of the ethanol concentration produced obviously more spherical particles.Increase of the nozzle size could slightly increase the particle size and narrow the particle size distribution.FTIR analysis showed that the chitosan had no evident structure change after the micronization process.