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Control of an Industrial SCR Catalyst Using Ceramic NOx Sensors

机译:使用陶瓷NOx传感器控制工业SCR催化剂

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Selective Catalytic Reduction (SCR) catalysts respond slowly to transient inputs, which is troublesome when designing ammonia feed controllers. An experimental SCR test apparatus installed on a slipstream of a Coo-per-Bessemer GMV-4, 2-stroke cycle natural gas engine is utilized. Ammonia (NH3) feed rate control algo-rithm development is carried out. Two control algorithms are evaluated: a feed forward control algorithm, using a pre ammonia injection ceramic NOx sensor and a feed forward plus feedback control algorithm, us-ing a pre ammonia injection ceramic NOx sensor and post catalyst ceramic NOx sensor to generate feedback signals. The feed forward algorithm controls to constant user input NH3/NOx molar ratio. The data show the lack of pressure compensation on the ceramic NOx sensors cause errors in feed forward NOx readings, re-sulting in sub optimal ammonia feed. The feedback system minimizes the post catalyst ceramic NOx sensor signal by adjusting the NH3/NOx molar ratio. The NOx sensors respond to ammonia + NOx; therefore, the feed forward plus feedback algorithm minimizes the sum of NOx emissions and ammonia slip. Successful application of the feedback control minimization technique is demonstrated with feedback periods of 15 and 5 minutes with molar ratio step sizes of 5 and 2.5%, respectively.
机译:选择性催化还原(SCR)催化剂对瞬态输入反应缓慢,这在设计氨进料控制器时很麻烦。利用安装在Coo-per-Bessemer GMV-4二冲程循环天然气发动机的滑流上的实验SCR测试设备。进行了氨(NH3)进料速率控制算法的开发。评估了两种控制算法:前馈控制算法(使用氨注入前陶瓷NOx传感器)和前馈加反馈控制算法(使用氨注入陶瓷NOx传感器前和催化后陶瓷NOx传感器生成反馈信号)。前馈算法控制恒定的用户输入NH3 / NOx摩尔比。数据显示,陶瓷NOx传感器上缺乏压力补偿会导致前馈NOx读数出现错误,从而导致次优的氨进料。反馈系统通过调节NH3 / NOx摩尔比使后催化剂陶瓷NOx传感器信号最小化。 NOx传感器对氨+ NOx做出响应;因此,前馈加反馈算法可最大程度地减少NOx排放量和氨泄漏的总和。反馈控制最小化技术的成功应用在15分钟和5分钟的反馈周期(摩尔比步长分别为5和2.5%)中得到了证明。

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