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Performance Evolution and Application of Nox-SCR Catalyst on a HD Diesel Engine Using Ethanol as a Reductant

机译:NOx-SCR催化剂在HD柴油发动机用乙醇作为还原剂的性能演化与应用

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Nox –SCR based on Ag/ Al2O3 catalyst by using ethanol as a reductant has proven its ability to significantly reduce Nox emission in a simulated engine exhaust gas environment. However the real engine exhaust gas environment is too complicate to be simulated. So the research of the Ag/ Al2O3 catalyst for real diesel engine exhaust gas environment is necessary. In this work, firstly the catalyst performance was evaluated on an engine bench and the effect of the catalyst on PM emission was investigated. Then the aftertreatment system composed of Ag/Al2O3 catalyst + Cu/TiO2 catalyst + Pt/TiO2 catalyst and Ethanol dosing control based on open loop control was designed. Finally the diesel engine emission with the aftertreatment system was tested on the ESC test cycle. The result showed that under the condition of fresh catalyst and SV=30,000 h-1, high Nox conversion (up to 90%) can be obtained in the range of temperature 350~450 . The Nox conversion efficiency will go up °C with the increase of the ethanol dosage, but cause the great increase of the CO emission and THC emission at the same time. Under the condition of inlet temperature =400 °C and nE:nNOx=1.5, the Nox conversion can maintain above 70% when the space velocity is less then 50,000 h-1. The aging test showed that sulfur absorbed on catalyst surface is the main reason for catalyst activation decreasing. The Ag/ Al2O3 catalyst can effectively decrease the SOF in PM, but have no effect on dry soot (DS). The Ag/Al2O3 catalyst can decrease the sulfate slightly when temperature is below 410 , but dramatically increase °C the sulfate when the inlet temperature is at 470 °C. Totally, the PM emission can be decreased more than half of the original engine out under the condition of inlet temperature 336°C, but increased a little when inlet temperature is at 470°C. The engine emission based on the ESC test cycle showed that engine with the aftertreatment system can completely meet EURO regulations with a original Ⅲ Nox emission of 13.06 g/kw.h.
机译:通过使用乙醇作为还原剂的基于Ag / Al2O3催化剂的NOx -SCR已经证明了其能够显着降低模拟发动机废气环境中的NOx排放。然而,可以模拟真实的发动机废气环境过于复杂。因此,需要对真实柴油发动机废气环境的AG / Al2O3催化剂的研究是必要的。在这项工作中,首先,研究了发动机工作台对催化剂性能进行了研究,并研究了催化剂对PM排放的影响。然后设计了由Ag / Al 2 O 3催化剂+ Cu / TiO2催化剂+ Pt / TiO 2催化剂和基于开环控制的乙醇计量控制组成的后处理系统。最后,在ESC测试循环上测试了随后系统的柴油发动机发射。结果表明,在新鲜催化剂和SV = 30,000h-1的条件下,在350〜450的温度范围内,可以获得高NOx转化率(高达90%)。 NOx转化效率随着乙醇剂量的增加而增加,但同时导致CO发射和THC发射的大幅增加。在入口温度的条件下= 400°C和NE:NNOX = 1.5,当空速小于50,000h-1时,NOx转化可以保持在70%以上。衰老试验表明,在催化剂表面上吸收的硫是催化剂活化降低的主要原因。 Ag / Al2O3催化剂可以有效地降低PM的SOF,但对干烟灰(DS)没有影响。当温度低于410时,Ag / Al 2O3催化剂可以略微降低硫酸盐,但当入口温度在470℃时显着增加硫酸盐。完全,PM发射可以在入口温度336°C的情况下减少超过一半的原始发动机,但入口温度在470°C时增加一点。基于ESC测试循环的发动机发射显示,具有后处理系统的发动机可以完全满足欧元的规定,原始ⅢnOx排放为13.06g / kW.h。

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