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Safety enhancement by transposition of the nitration of toluene from semi-batch reactor to continuous intensified heat exchanger reactor

机译:通过将甲苯的硝化从半间歇式反应器转移到连续强化热交换器反应器来提高安全性

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摘要

The behaviour of a continuous intensified heat exchanger (HEX) reactor in case of process failure is analysed and compared to the behaviour of a semi-continuous reactor. The nitration of toluene is considered as test reaction to identify the main failure scenarios that can lead to thermal runaway in both processes using the HAZOP method.No flow rate of process fluid and utility fluid in the continuous process. No stirring during feeding of the reactor followed by normal stirring for the semi-continuous reactor. These scenarios are simulated for both processes and the temperature profiles are observed. This study shows that the temperature is better controlled in the continuous process because of the intrinsic characteristics of the HEX reactor. In fact, this device has a low reactive volume relative to the mass of the reactor, allowing a good dissipation of the heat produced by the reaction, even in case of failure. This characteristic of the intensified reactor is confirmed by an experimental work.
机译:分析了过程故障情况下连续强化热交换器(HEX)反应器的行为,并将其与半连续反应器的行为进行了比较。甲苯的硝化被认为是测试反应,以确定使用HAZOP方法在两个过程中可能导致热失控的主要故障情况。在连续过程中,没有工艺流体和实用流体的流速。在进料反应器期间不进行搅拌,随后对半连续反应器进行正常搅拌。针对两个过程都模拟了这些场景,并观察了温度曲线。这项研究表明,由于HEX反应器的固有特性,在连续过程中可以更好地控制温度。实际上,该装置相对于反应器的质量具有较小的反应体积,即使在发生故障的情况下,也可以很好地散发反应产生的热量。实验工作证实了增强反应器的这一特性。

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