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MODELLING APPROACH FOR A HYDROLYSIS REACTOR FOR THE AMMONIA PRODUCTION IN MARITIME SCR APPLICATIONS

机译:海上SCR应用中氨生产水解反应器的建模方法

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The catalytic generation of ammonia from a liquid urea solution is a critical process determining the performance of SCR (Selective Catalytic Reduction) systems. Solid deposits on the catalyst surface from the decomposition of urea have to be avoided, as this leads to reduced system performance or even failure. At present, reactor design is often empirical, which poses a risk for costly iterations due to insufficient system performance. The presented research project proposed a performance prediction and modelling approach for SCR hydrolysis reactors generating ammonia from urea. Different configurations of hydrolysis reactors were investigated experimentally. Ammonia concentration measurements provided information about parameters influencing the decomposition of urea and the system performance. The evaporation of urea between injection and interaction with the catalyst was identified as the critical process driving the susceptibility to deposit formation. The spray of urea solution was characterised in terms of velocity distribution by means of particle-image velocimetry. Results were compared with theoretical predictions and calculation options for processes in the reactor were determined. Numerical simulation was used as an additional design and optimisation tool of the proposed model. The modelling approach is presented by a step-by-step method which takes into account design constraints and operating conditions for hydrolysis reactors.
机译:由液态尿素溶液催化生成氨是决定SCR(选择性催化还原)系统性能的关键过程。必须避免由于尿素分解而在催化剂表面形成固体沉积物,因为这会导致系统性能下降甚至出现故障。目前,反应堆的设计通常是经验性的,由于系统性能不足,这会带来代价高昂的迭代风险。提出的研究项目提出了一种由尿素产生氨的SCR水解反应器的性能预测和建模方法。实验研究了水解反应器的不同配置。氨气浓度测量提供了有关影响尿素分解和系统性能的参数的信息。在注入和与催化​​剂相互作用之间的尿素蒸发被确定为驱动沉积物形成敏感性的关键过程。借助于颗粒图像测速法,根据速度分布来表征尿素溶液的喷雾。将结果与理论预测值进行比较,并确定了反应器中工艺的计算选项。数值模拟被用作所提出模型的附加设计和优化工具。通过分步方法介绍了建模方法,该方法考虑了水解反应器的设计约束和运行条件。

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