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Diesel Engine Emission Reduction Using Catalytic Nanoparticles: An Experimental Investigation

机译:催化纳米颗粒降低柴油机排放的实验研究

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Cerium oxide being a rare earth metal with dual valance state existence has exceptional catalytic activity due to its oxygen buffering capability, especially in the nanosized form. Hence when used as an additive in the diesel fuel it leads to simultaneous reduction and oxidation of nitrogen dioxide and hydrocarbon emissions, respectively, from diesel engine. The present work investigates the effect of cerium oxide nanoparticles on performance and emissions of diesel engine. Cerium oxide nanoparticles were synthesized by chemical method and techniques such as TEM, EDS, and XRD have been used for the characterization. Cerium oxide was mixed in diesel by means of standard ultrasonic shaker to obtain stable suspension, in a two-step process. The influence of nanoparticles on various physicochemical properties of diesel fuel has also been investigated through extensive experimentation by means of ASTM standard testing methods. Load test was done in the diesel engine to investigate the effect of nanoparticles on the efficiency and the emissions from the engine. Comparisons of fuel properties with and without additives are also presented.
机译:氧化铈是具有双价态存在的稀土金属,由于其氧气缓冲能力,尤其是纳米级形式,具有出色的催化活性。因此,当用作柴油燃料中的添加剂时,其分别导致柴油发动机的二氧化氮和碳氢化合物排放物同时被还原和氧化。本工作研究了氧化铈纳米颗粒对柴油机性能和排放的影响。通过化学方法合成了氧化铈纳米颗粒,并使用了TEM,EDS和XRD等技术进行了表征。通过标准超声振荡器将氧化铈与柴油混合,以两步法获得稳定的悬浮液。纳米粒子对柴油各种理化性质的影响也已通过ASTM标准测试方法的广泛实验进行了研究。在柴油发动机上进行了负载测试,以研究纳米颗粒对发动机效率和排放的影响。还介绍了添加和不添加添加剂时燃料性能的比较。

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