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EMERGING CHALLENGES AND DESIGN STRATEGIES FOR SCR SYSTEMS

机译:SCR系统的新挑战和设计策略

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Selective Catalytic Reduction has been well demonstrated as an effective technology for reducing NOx emissions from coal-fired utility boilers. Emerging environmental regulations can have an impact on the traditional design and operation of an SCR system. Increasing demands on SCR emission reduction performance affects the design of many of the SCR components aside from the catalyst bed. Obtaining an optimal distribution of ammonia reagent in the flue gas stream is a primary requirement for high performance levels. This requirement must be balanced with limited space availability, all while obtaining both robust operation and minimal operating costs. Addressing these issues has led to the development of a variety of ammonia injection and distribution methods. Gas mixer designs, such as the IsoSwirlTM mixer, offer a means to obtain high levels of NOx removal while addressing problematic conditions and featuring simple ammonia delivery systems. Ammonia injection methods may utilize either traditional, vapor-phase techniques or the direct injection of an aqueous ammonia supply which avoids ammonia vaporizer requirements.
机译:选择性催化还原已被证明是减少燃煤电站锅炉NOx排放的有效技术。新兴的环境法规可能会对SCR系统的传统设计和运行产生影响。除催化剂床外,对SCR排放降低性能的要求不断提高也影响了许多SCR组件的设计。获得氨试剂在烟气流中的最佳分布是高性能水平的主要要求。必须在有限的空间可用性与所有这些要求之间取得平衡,同时要获得稳定的运行和最小的运行成本。解决这些问题导致了各种氨注入和分配方法的发展。气体混合器设计,例如IsoSwirlTM混合器,提供了一种在解决问题条件的同时获得高水平NOx去除率的方法,并具有简单的氨气输送系统。氨注入方法可以利用传统的气相技术,也可以直接注入氨水,避免了氨气化器的需求。

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