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首页> 外文期刊>Journal of Hazardous Materials >Industrial and simulation analysis of the nitrogen trichloride decomposition process in electrolytic chlorine production
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Industrial and simulation analysis of the nitrogen trichloride decomposition process in electrolytic chlorine production

机译:电解氯生产中三氯化氮分解过程的工业和模拟分析

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This work presents the dynamic simulation of the thermal decomposition of nitrogen trichloride (NC1_3) during electrolytic chlorine (Cl_2) production, using an industrial plant as a case study. NC1_3 is an extremely unstable and explosive compound and the decomposition process has the following main problems: changeability of the reactor temperature and loss of solvent. The results of this work will be used to establish a more efficient and safe control strategy and to analyze the loss of solvent during the dynamic period. The implemented model will also be used to study the use of a new solvent, considering that currently used solvent will be prohibited from commercial use in 2010. The process was simulated by using the commercial simulator Aspen™ and the simulations were validated with plant data. From the results of the simulation it can be concluded that the rate of decomposition depends strongly on the temperature of the reactor, which has a stronger relationship to the liquid Cl_2 (reflux) and gaseous Cl_2 flow rates which feed the system. The results also showed that the loss of solvent changes strongly during the dynamic period.
机译:这项工作以一个工业工厂为例,介绍了电解氯(Cl_2)生产过程中三氯化氮(NC1_3)热分解的动态模拟。 NC1_3是一种极不稳定且易爆炸的化合物,其分解过程存在以下主要问题:反应器温度的可变性和溶剂损失。这项工作的结果将用于建立更有效和安全的控制策略,并分析动态期间溶剂的损失。考虑到当前使用的溶剂将在2010年被禁止商业使用,已实现的模型还将用于研究新溶剂的使用。该过程使用商业模拟器Aspen™进行了仿真,并且该仿真已通过工厂数据进行了验证。从模拟结果可以得出结论,分解速度在很大程度上取决于反应器的温度,反应器的温度与向系统供料的液体Cl_2(回流)和气态Cl_2流量具有更强的关系。结果还表明,溶剂损失在动态期间变化很大。

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