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Effect of Oxygen Containing Biofuels on the Emissions with Exhaust Gas Catalysts

机译:含氧生物燃料对废气催化剂排放的影响

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One of the first alternative fuels has been fossil crude oil based containing a small amount of biomass-derived compounds (bioethanol or biodiesel). Biofuels usually contain oxygenated hydrocarbons such as alcohols or esters. The increasing use of alternative fuels will occur at the same time when various after-treatment systems (oxidation catalysts, filters, SCR catalysts) will be commercialized worldwide between 2010 and 2020. The effects of biofuels on emissions and emission catalysts were reviewed widely in this study. The change in raw emissions has effects on the selection, performance and durability of catalytic systems. Bioethanol has been used widely with emission catalysts since 1990's in Brazil. The results with three-way catalysts (TWC) were analyzed in those conditions. PtRh catalysts showed the better performance and durability than Pd containing TWCs. The effect of noble metal type (Pt, Pd, PtPd), loading and space velocity was studied with aged diesel oxidation catalyst samples under laboratory conditions. Ethanol and acetaldehyde were used to simulate biofuel compounds and derivates formed in the engine. The formation of acetaldehyde is higher with ethanol than with diesel fuels. The ethanol reactions on oxidation catalysts was experimentally simulated over European Driving Cycle (EDC) in comparison to diesel exhaust gases. The formation and oxidation of acetaldehyde were detected on Pd-containing oxidation catalysts but Pt-only catalyst showed the lowest acetaldehyde formation ability. The net effect is clearly positive to reduce acetaldehyde emissions with efficient oxidation catalyst.
机译:第一替代燃料中的一种是含有少量生物质衍生的化合物(生物乙醇或生物柴油)的化石原油。生物燃料通常含有氧化烃,例如醇或酯。当在2010年至2020年期间,在全球各种后处理系统(氧化催化剂,过滤器,SCR催化剂)时,越来越多的替代燃料使用的使用情况将在全球范围内商业化。生物燃料对排放和排放催化剂的影响广泛审查学习。原始排放的变化对催化系统的选择,性能和耐久性具有影响。自1990年代以来,生物乙醇广泛用于巴西自1990年以来的排放催化剂。在这些条件下分析了三元催化剂(TWC)的结果。 PTH催化剂显示出比含有TWCS的PD更好的性能和耐久性。在实验室条件下,研究了贵金属型(Pt,Pd,PTPD),装载和空间速度的效果。乙醇和乙醛用于模拟发动机中形成的生物燃料化合物和衍生物。乙醛的形成比乙醇高于柴油燃料。与柴油废气相比,通过欧洲驾驶循环(EDC)在实验模拟氧化催化剂的乙醇反应。在含Pd的氧化催化剂上检测乙醛的形成和氧化,但仅PT催化剂显示出最低的乙醛形成能力。净效应明显呈阳性,以减少高效氧化催化剂的乙醛排放。

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