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干法造粒炉黑臭氧氧化流化床技术的开发(Ⅱ)热态间歇反应
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作者 彭辉 孙东凯 +2 位作者 王锦凤 张济宇 刘振宇 《煤炭转化》 CAS CSCD 1999年第1期86-91,共6页
在热态间歇状态下,考察气流速度、臭氧浓度、反应温度、干法炉黑静床高度及干法炉黑在流化床内的反应时间等因素对干法炉黑臭氧氧化深度即炉黑pH值的影响,以确定适宜的干法炉黑臭氧氧化的工艺条件.上述因素对炉黑pH值与反应时间... 在热态间歇状态下,考察气流速度、臭氧浓度、反应温度、干法炉黑静床高度及干法炉黑在流化床内的反应时间等因素对干法炉黑臭氧氧化深度即炉黑pH值的影响,以确定适宜的干法炉黑臭氧氧化的工艺条件.上述因素对炉黑pH值与反应时间t之间关系的影响可归因于流化床内单位时间臭氧与炉黑的重量比值R.炉黑达到相同的pH值时,反应时间与R成正比,最终得到了炉黑pH值随反应时间变化的关联式. 展开更多
关键词 臭氧氧化 流化床 热态间歇反应 颜料 干洗炉黑
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The Dynamic Flexibility of Batch Exothermic Reaction System: Take into Account the Effect of the Initial Operational Temperature 被引量:2
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作者 周华 钱宇 +2 位作者 李秀喜 崔健 Andrzej Kraslawski 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2008年第6期916-922,共7页
It is shown in this article that by changing the initial operation condition of the batch processes, the dynamic performance of the system can be varied largely, especially for the initial operational temperature of t... It is shown in this article that by changing the initial operation condition of the batch processes, the dynamic performance of the system can be varied largely, especially for the initial operational temperature of the exothermic reaction. The initial operation condition is often ignored in the designing batch processes for flexibility against disturbances or parameter variations. When the initial condition is not rigid as in the case of a batch reactor, where the initial reaction temperature is quite arbitrary, optimization can also be applied to determine the "best" initial condition to use. Problems for dynamic flexibility analysis of exothermic reaction including initial temperature and process operation can be formulated as dynamic optimization problems. Formulations are derived when the initial conditions are considered or not. When the initial conditions are considered, the initial condition can be transferred into control variables in the first optimal step. The solution of the dynamic optimization is on the basis of Rugge-Kutta integration algorithm and decomposition search algorithm. This method, as illustrated and tested with two highly nonlinear process problems, enables the determination of the optimal level. The dynamic performance is improved by the proposed method in the two exothermic reaction examples. 展开更多
关键词 batch process dynamic flexibility optimization exothermic reaction
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