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Kinetic Measurements of HNCO Hydrolysis over SCR Catalyst

机译:SCR催化剂HNCO水解的动力学测量

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To meet the strict emission regulations for diesel engines, an advanced processing device such as a Urea-SCR (selective catalytic reduction) system is used to reduce NO_x emissions. The Real Driving Emissions (RDE) test, which is implemented in the European Union, will expand the range of conditions under which the engine has to operate [1], which will lead to the construction of a Urea-SCR system capable of reducing NO_x emissions at lower and higher temperature conditions, and at higher space velocity conditions than existing systems. Simulations are useful in improving the performance of the urea-SCR system. However, it is necessary to construct a reliable NO_x reduction model to use for system design, which covers the expanded engine operation conditions. In the urea-SCR system, the mechanism of ammonia (NH_3) formation from injected aqueous urea solution is not clear. Thus, it is important to clarify this mechanism to improve the NO_x reduction model. In particular, the investigation of the hydrolysis of isocyanic acid (HNCO), which is formed as an intermediate product in the process of NH_3 formation from urea-water solution, is required. Although previous studies have reported the rate constant of HNCO hydrolysis, these were obtained from indirect rather than direct measurements of HNCO. In this study, the reaction rate of HNCO hydrolysis over Cu-ZSM5 catalyst was measured by generating high-purity HNCO and conducting high-precision HNCO measurements. The reaction rate of HNCO hydrolysis is used in the simulation of the urea-SCR system in order to construct a reliable NO_x reduction model for system design.
机译:为了满足对柴油发动机,一种先进的处理装置,诸如尿素SCR(选择性催化还原)系统的严格的排放法规是用来减少NO_x的排放。真正的推动排放(RDE)测试,其在欧洲联盟中实现,将扩展其下发动机必须操作的条件的范围[1],这将导致一个尿素SCR系统的结构能够降低中NO_x的排放在较低和较高的温度条件下,并且在较高空间速度的条件比现有系统。模拟是在提高尿素SCR系统的性能非常有用。然而,有必要建立一个可靠的NO_x的还原模型,用于系统设计,它涵盖了扩大发动机运行状况。在尿素SCR系统中,从所注射的含水尿素溶液中的氨(NH_3)形成的机制尚不清楚。因此,为了澄清这个机制,提高NO_x的还原模型是很重要的。特别地,异氰酸的水解(HNCO),其形成为在从尿素水溶液NH_3形成过程中的中间产品的调查,是必需的。尽管以前的研究报告HNCO水解速率常数,这些都是从HNCO的间接而不是直接测量得到的。在这项研究中,HNCO水解过的Cu-ZSM5催化剂的反应速率为通过产生高纯度的HNCO和进行高精度测量HNCO测量。 HNCO水解的反应速率在尿素SCR系统的模拟中使用,以便构造用于系统设计的可靠NO_x的减少模式。

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