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Theoretical and experimental investigation on current generation Pd/Rh catalytic converter

机译:基流发电PD / RH催化转化器的理论与实验研究

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Performance of a current generation catalytic converter using Pd/Rh (10:1) as binary catalyst impeded on an ultra- thin ceramic substrate and alumina wash coat is modeled for performance prediction and parametric optimization. Kinetic rates for the catalyst are reduced after conducting series of experiments on a passenger car engine. A new concept in mass transfer coefficient is introduced for improving accuracy of the model prediction. In order to take care of the precious metal resources and to become independent of precious metal price fluctuation, a new pattern of loading of precious metal is suggested for optimum performance and metal savings about 46 percent was observed. Experimental investigations were carried out to validate the established kinetic rates over a wide range operation of the engine and for the model validation. Satisfactory agreements are observed for the model prediction and experimental results.
机译:使用Pd / RH(10:1)的电流产生催化转化器的性能作为阻抗在超薄陶瓷基材和氧化铝洗涤涂层上的二元催化剂,用于性能预测和参数优化。在进行乘用车发动机的一系列实验后,催化剂的动力速率降低。引入了大规模转移系数的新概念,提高了模型预测的精度。为了照顾贵金属资源并与贵金属价格波动独立,建议为最佳性能和贵重金属装载模式,并观察到约46%的金属节省。进行实验研究,以验证发动机广泛运行和模型验证的既定的动力速率。对于模型预测和实验结果,观察到令人满意的协议。

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