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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Activation by pretreatment of Ag-Au/Al2O3 bimetallic catalyst to improve low temperature HC-SCR of NOx for lean burn engine exhaust
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Activation by pretreatment of Ag-Au/Al2O3 bimetallic catalyst to improve low temperature HC-SCR of NOx for lean burn engine exhaust

机译:通过预处理Ag-Au / Al2O3双金属催化剂进行活化,以改善用于稀薄燃烧发动机排气的NOx的低温HC-SCR

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摘要

Bimetallic Ag-Au/Al2O3 catalyst was synthesised by successive impregnation of 1% Au and 1% Ag on in-house prepared high surface area alumina (450 m(2)/g). The corresponding monometallic catalysts were also prepared by loading 1% Ag or 1% Au on the same high surface area alumina for comparison. The catalysts were characterised by various physico-chemical techniques and tested for SCR activity under lean burn engine exhaust conditions. Ag-Au/Al2O3 catalyst prepared by successive impregnation method showed considerably higher NO reduction (100%) to N-2 compared to 1% Au/Al2O3 (70%) whereas the activity was comparable with that of 1% Ag/Al2O3 (96%). The effect of various pretreatments on SCR activity of Ag-Au/Al2O3 was studied and pretreatment at 250 degrees C in flow of hydrogen was found to give the best results with 100% NO conversion to N-2 at 353 degrees C. Further ageing of the catalyst under reaction feed at 500 degrees C resulted in considerable increase in low temperature activity of bimetallic catalyst with similar to 40% NO conversion at 222 degrees C. Even though the SCR activity of pretreated Ag-Au/Al2O3 and Ag/Al2O3 were comparable, after ageing the Ag-Au/Al2O3 showed significantly higher NO conversion (95%) compared to Ag/Al2O3 (83%) and Au/Al2O3 (70%). The formation of H-2 and CO due to steam reforming of higher hydrocarbon (decane) was evidenced at the temperature of highest deNO(x) activity. Detailed investigation of the textural properties of the pretreated and aged catalysts showed presence of well dispersed metallic Au and Ag-n(delta+) clusters after pretreatment in hydrogen at 250 degrees C. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过在内部准备的高表面积氧化铝(450 m(2)/ g)上连续浸渍1%Au和1%Ag来合成双金属Ag-Au / Al2O3催化剂。还通过在相同的高表面积氧化铝上负载1%Ag或1%Au来制备相应的单金属催化剂用于比较。催化剂通过各种物理化学技术进行了表征,并在稀燃发动机排气条件下测试了SCR活性。相较于1%Au / Al2O3(70%),通过连续浸渍法制备的Ag-Au / Al2O3催化剂对N-2的NO还原率(100%)明显更高,而活性与1%Ag / Al2O3相当(96 %)。研究了各种预处理对Ag-Au / Al2O3 SCR活性的影响,发现在氢气流中于250摄氏度下进行预处理可获得最佳结果,在353摄氏度下100%NO转化为N-2。催化剂在500摄氏度的反应进料下导致双金属催化剂的低温活性大大提高,在222摄氏度下的NO转化率接近40%。尽管预处理后的Ag-Au / Al2O3和Ag / Al2O3的SCR活性相当老化后,与Ag / Al2O3(83%)和Au / Al2O3(70%)相比,Ag-Au / Al2O3表现出明显更高的NO转化率(95%)。在较高的deNO(x)活性温度下,由于高级烃(癸烷)的蒸汽重整而形成了H-2和CO。对经过预处理和老化的催化剂的结构性能进行的详细研究表明,在250°C的氢气中进行预处理后,存在分散良好的金属Au和Ag-n(δ+)团簇。(C)2015 Elsevier B.V.保留所有权利。

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