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生物航煤对飞机油箱密封胶性能影响研究 被引量:1
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作者 柳华 杜伟军 +3 位作者 叶李薇 陈凯 涂椿滟 夏祖西 《中国民航大学学报》 CAS 2014年第5期36-39,共4页
研究利用餐饮余油,采用脂肪酸加氢工艺合成的生物燃料组分对飞机油箱密封胶性能的影响。实验结果表明,重铬酸盐固化聚硫密封胶和锰固化聚硫密封胶在生物燃料组分93℃的环境温度中浸泡28 d后,其硬度明显增加,断裂伸长率明显减小,体积出... 研究利用餐饮余油,采用脂肪酸加氢工艺合成的生物燃料组分对飞机油箱密封胶性能的影响。实验结果表明,重铬酸盐固化聚硫密封胶和锰固化聚硫密封胶在生物燃料组分93℃的环境温度中浸泡28 d后,其硬度明显增加,断裂伸长率明显减小,体积出现较大收缩。当生物燃料组分与传统喷气燃料按照50/50体积比掺混后,重铬酸盐固化聚硫密封胶体积膨胀率从-3.0%增加到-0.5%,而锰固化聚硫密封胶体积膨胀率从-6.7%增加到-5%。其各自的硬度、断裂伸长率也均发生了明显变化。 展开更多
关键词 生物燃料组分 生物航煤 飞机 油箱密封胶
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Oxidative polymerization of hydroquinone using deoxycholic acid supramolecular template
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作者 ZHANG AiJuan HE Jian +3 位作者 GUAN Ying LI ZhanYong ZHANG YongJun ZHU Julian X. 《Science China Chemistry》 SCIE EI CAS 2012年第5期830-835,共6页
Polyhydroquinone (PHQ) is a redox-active polymer with quinone/hydroquinone redox active units in the main chain and may have potential applications as a mediator in biosensors and biofuel cells. By the oxidative polym... Polyhydroquinone (PHQ) is a redox-active polymer with quinone/hydroquinone redox active units in the main chain and may have potential applications as a mediator in biosensors and biofuel cells. By the oxidative polymerization of hydroquinone (HQ), PHQ can be easily synthesized, but the reaction lacks control over the structure of the product. Deoxycholic acid (DCA) was introduced as a supramolecular template to control the reaction. The reaction rate is 14 times of that in deionized water and twice of that in buffer. The DCA template increases not only the reaction rate, but also the molecular weight of the polymer obtained. The template effect of DCA was attributed to the supramolecular assemblies of DCA formed in the solution. Cyclic voltammetry study indicated the resulting PHQ was redox-active. While the supramolecular assemblies of DCA provided a template for the oxidative polymerization of HQ, the protons released as a by-product of the oxidative polymerization of HQ in turn enhanced the self-assembly of DCA. As a result, DCA microfibers form and separate out of the solution. 展开更多
关键词 polyhydroquinone deoxycholic acid SELF-ASSEMBLY oxidative polymerization
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