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一种超声辅助溶剂–非溶剂法高氯酸铵/奥克托今重结晶复合物的热分析
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作者 武文杰 马宇谦 齐秀芳 《物理化学进展》 CAS 2022年第3期134-146,共13页
以丙酮为溶剂,正丁醇和丙三醇为助剂,乙酸乙酯为非溶剂,采用超声辅助溶剂–非溶剂重结晶法快速制备了微纳米高氯酸铵(AP)/奥克托今(HMX)复合物,通过热分析及热分析动力学研究其热分解性能。通过SEM、PXRD、FTIR对晶体的形貌、结构和组... 以丙酮为溶剂,正丁醇和丙三醇为助剂,乙酸乙酯为非溶剂,采用超声辅助溶剂–非溶剂重结晶法快速制备了微纳米高氯酸铵(AP)/奥克托今(HMX)复合物,通过热分析及热分析动力学研究其热分解性能。通过SEM、PXRD、FTIR对晶体的形貌、结构和组成进行表征,利用TG-DSC和DSC-TG-IR对其热分解进行分析,考察了其热分析动力学参数及同步热分解产物。结果表明:所制备的AP/HMX复合物晶体粒径小于10 &#181;m,呈较圆滑的类椭球形;HMX/AP复合物的低温分解起始温度为283.8℃,峰温294.5℃,失重率约为25%;在280℃~400℃的范围内,分解产物CO2与N2O的红外吸收曲线呈现出相同的变化规律,说明复合物中HMX的分解与AP的分解同步发生;AP/HMX复合物的低温分解表观活化能为106.38 kJ∙mol−1,比AP提高2.94 kJ∙mol−1,说明AP/HMX复合物中AP的热安定性提高;计算得到热爆炸临界温度Tb为260.6℃,比AP降低28.8℃,比HMX提高4.9℃。AP/HMX复合物的热稳定性良好。 展开更多
关键词 物理化学 重结晶 超声 溶剂–非溶剂法 AP/HMX 热稳定性 热分析动力学
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Efficient Extraction of Astaxanthin from Phaffia rhodozyma with Polar and Non-polar Solvents after Acid Washing 被引量:6
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作者 尹春华 杨淑珍 +1 位作者 刘晓璐 闫海 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2013年第7期776-780,共5页
method of extracting astaxanthin from Phaffia rhodozyma with various solvents after acid washing was investigated. The extraction efficiency was distinctly increased after acid washing of P. rhodozyma cells. When the ... method of extracting astaxanthin from Phaffia rhodozyma with various solvents after acid washing was investigated. The extraction efficiency was distinctly increased after acid washing of P. rhodozyma cells. When the concentration of HCl was 0.4 mol.L^-1, the highest extraction efficiency of astaxanthin was achieved which was about three times higher than the control. Acetone or benzene as single polar or non-polar solvent was the most ef- fective solvent in our research. With a combination of isopropanol and n-hexane (volume ratio of 2 : 1), the maxi- mal extraction efficiency was achieved, approximately 60% higher than that obtained with a single solvent. The liquid-solid ratio and the extracting time were also optimized. Under the optimum extraction conditions, the extraction yield of astaxanthin exceeded 98%. 展开更多
关键词 ASTAXANTHIN Phaffia rhodozyma acid wash EXTRACTION SOLVENT
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