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CONTROL DESIGN OF AN AUTOMOTIVE UREA SCR CATALYST

机译:尿素SCR催化剂的控制设计

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摘要

The leading aftertreatment technologies for NOx removal from the exhaust gas of lean burn engines, Diesels in particular, are urea based Selective Catalytic Reduction (SCR), Lean NOx Traps (LNT) and Active Lean NO_x Catalysts (ALNC). It is generally believed that the SCR technique has the potential of providing the best NOx conversion efficiency relative to the other techniques. Nonetheless, it is crucial that the high conversion efficiencies be achieved with a minimum slippage of unreacted ammonia as tail pipe emissions. This necessitates a precise control over the urea injection process. The complex behavior of the catalyst substrate with respect to adsorption and desorption of ammonia in conjunction with a lack of "stored ammonia" sensing capabilities makes the control problem challenging. In this paper we present a model-based control design approach using a lumped parameter model of an SCR system that includes the essential dynamics of the plant. The model includes the adsorption, desorption and surface coverage dynamics, along with the NO_x reduction and ammonia oxidation dynatnics based on the relevant chemical reaction rates.
机译:从稀薄燃烧发动机的废气中尤其是柴油中去除NOx的领先后处理技术是基于尿素的选择性催化还原(SCR),贫NOx捕集阱(LNT)和活性贫NOxx催化剂(ALNC)。通常认为,SCR技术相对于其他技术具有提供最佳NOx转化效率的潜力。尽管如此,至关重要的是要以最小的未反应氨作为尾管排放物的滑移来实现高转换效率。这需要对尿素喷射过程进行精确控制。催化剂底物相对于氨的吸附和解吸的复杂行为,加上缺乏“储存的氨”感测能力,使得控制问题具有挑战性。在本文中,我们提出了一种基于模型的控制设计方法,该方法使用的是SCR系统的集总参数模型,其中包括工厂的基本动态特性。该模型包括吸附,解吸和表面覆盖动力学,以及基于相关化学反应速率的NO_x还原和氨氧化动力学。

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