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环氧树脂灌封料的固化动力学及固化工艺 被引量:5
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作者 李爱 崔华楠 +6 位作者 余清 徐文卿 朱洨易 吕亚栋 安卫军 孔米秋 李光宪 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2021年第4期105-112,120,共9页
采用流变学手段、非等温差示扫描量热法和原位升温傅里叶变换红外光谱法研究了2种环氧树脂灌封料的固化动力学,并对其固化工艺进行设计与验证。采用Kissinger和Flynn-Wall-Ozawa方程计算得到2种灌封料的平均表观活化能分别为70.76 kJ/mo... 采用流变学手段、非等温差示扫描量热法和原位升温傅里叶变换红外光谱法研究了2种环氧树脂灌封料的固化动力学,并对其固化工艺进行设计与验证。采用Kissinger和Flynn-Wall-Ozawa方程计算得到2种灌封料的平均表观活化能分别为70.76 kJ/mol和61.61 kJ/mol。根据DSC非等温曲线外推法获得体系的理论固化温度及时间,并依此得到的固化物与原始条件制备的固化物进行力学性能对比,发现影响固化工艺设计的关键因素是温度和时间。研究结果可为环氧树脂灌封料的固化工艺条件设计及实际应用提供理论参考。 展开更多
关键词 环氧树脂灌封料 固化动力学 固化工艺设计 原位升温傅里叶红外光谱法
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Application of a hybrid gravity-driven membrane filtration and dissolved ozone flotation(MDOF)process for wastewater reclamation and membrane fouling mitigation 被引量:1
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作者 Xin Jin Wei Wang +5 位作者 Shuai Wang Pengkang Jin Xiaochang C.Wang Wushou Zhang weijun an Yong Wang 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2019年第7期17-27,共11页
This study proposed a novel membrane filtration and dissolved ozone flotation integrated(MDOF) process and tested it at pilot scale. Membrane filtration in the MDOF process was operated in gravity-driven mode, and req... This study proposed a novel membrane filtration and dissolved ozone flotation integrated(MDOF) process and tested it at pilot scale. Membrane filtration in the MDOF process was operated in gravity-driven mode, and required no backwashing, flushing, or chemical cleaning. Because ozone was added in the MDOF process, ozonation, coagulation, and membrane filtration could occur in a single reactor. Moreover, in situ ozonation occurred in the MDOF process, which differs from the conventional pre-ozonation membrane filtration process. Significant enhancement of turbidity removal was further achieved through the addition of membrane filtration. Membrane fouling was mitigated in the MDOF process compared to the MDAF process. In situ ozonation in the MDOF process decreased the fluorescence intensity and transformed the high MW dissolved organics into small MW compounds. For the fouling layer, the extracellular polymeric substance(EPS) contents and cake layer morphology were analyzed. The results indicated that the contents of EPS decreased. Furthermore, a thinner and more loosely structured cake layer formed in the MDOF process. Because coagulation and ozonation occurred simultaneously in a single reactor, the generation of hydroxyl radicals was enhanced through the catalytic effect of Al-based coagulants on ozone decomposition, which further alleviated membrane fouling in the MDOF process. 展开更多
关键词 Dissolved OZONE FLOTATION Gravity-driven MEMBRANE filtration MEMBRANE fouling In situ ozonation
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