Influence of an oxygenated additive on emission of an engine fueled with neat biodiesel

来源 :Petroleum Science | 被引量 : 0次 | 上传用户:majixiong0
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Biodiesel obtained from mustard seed is found to be a promising alternative for petroleum diesel fuel owing to its similarity in physical and chemical properties. In this work, TiO_2 nano-fluid which acts as an oxygen buffer during combustion was added to mustard oil biodiesel(MOBD) to study its effect on emission characteristics of MOBD. TiO_2 nano-fluid can provide high surface energy during the course of combustion and reduces the limitations of neat biodiesel. A four-stroke, multi-cylinder,water-cooled, diesel engine was used in the experiments and was fueled with diesel, neat MOBD and MOBD with TiO_2 nanoparticles at 100 ppm(MOBDT100), 200 ppm(MOBDT200) and 300 ppm(MOBDT300). Experimental results revealed that the TiO_2 nanoparticles had positive effect on the emission characteristics of MOBD as it acted as an oxidation buffer. MOBDT300 showed a reduction in HC, CO and smoke emissions as compared to pure MOBD.In addition, NO_x emissions were also reduced by the catalytic activity of the TiO_2 nanoparticles which reduce the peak combustion temperature. Therefore, TiO_2 nano-fluid had a positive effect on reducing the emissions associated with neat biodiesel. Biodiesel obtained from mustard seed is found to be a promising alternative for petroleum diesel fuel due to its similarity in physical and chemical properties. In this work, TiO_2 nano-fluid which acts as an oxygen buffer during combustion was added to mustard oil biodiesel (MOBD ) to study its effect on emission characteristics of MOBD. TiO 2 nano-fluid can provide high surface energy during the course of combustion and reduces the limitations of neat biodiesel. A four-stroke, multi-cylinder, water-cooled, diesel engine was used in the experiments and was fueled with diesel, neat MOBD and MOBD with TiO_2 nanoparticles at 100 ppm (MOBDT100), 200 ppm (MOBDT200) and 300 ppm (MOBDT300). Experimental results revealed that the TiO_2 nanoparticles had positive effect on the emission characteristics of MOBD as it acted as an oxidation buffer. MOBDT300 showed a reduction in HC, CO and smoke emissions as compared to pure MOBD. Addition, NO_x emissions were also reduced by the catalytic activity of the TiO_2 nanoparticles which reduce the peak combustion temperature. Thus, TiO_2 nano-fluid had a positive effect on reducing the emissions associated with neat biodiesel.
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