8nm氧化铈作为燃料添加剂用于降低燃料消耗和排放

M. Gardener, G. Wakefield
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引用次数: 0

摘要

8nm氧化铈被表面功能化,以与柴油兼容,并以5-8ppm的水平添加到燃料中。静态发动机测试和大规模现场试验表明,发动机燃油消耗减少了3.5-8%,排放,特别是黑碳颗粒和未燃烧的碳氢化合物减少了150 - 15%。氧化铈作为一种供氧催化剂,作为一种耐火陶瓷,在燃料燃烧中幸存下来,并从两个方面改善发动机性能。首先,氧化铈的活化能与尺寸有关,因此8nm颗粒在壁温下燃烧掉发动机气缸内的积碳。发动机逐渐被氧化铈净化,性能得到提高。其次,在燃料燃烧过程中,氧化铈在气相中起作用,以减少非极性化合物在气缸壁上的沉积。这表明在燃烧过程中燃料氧化,这反过来又导致减少发动机沉积积累和碳基排放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
8nm Cerium Oxide as a Fuel Additive for Fuel Consumption and Emissions Reduction
8nm cerium oxide is surface functionalised for diesel compatibility and added to fuel at a level of 5-8ppm. Static engine tests and large scale field trials show that engine fuel consumption is reduced by 3.5-8% and emissions, particularly of black carbon particulates and unburnt hydrocarbons are reduced by >15%. Cerium oxide acts as an oxygen donating catalyst which, as a refractory ceramic, survives the fuel burn and acts to improve engine performance in two ways. Firstly, the activation energy of cerium oxide is size related and as a consequence 8nm particles act to burn off carbon deposits within the engine cylinder at the wall temperature. The engine is progressively cleaned up by cerium oxide and performance improves. Secondly, the cerium oxide acts in the gas phase during fuel burning to reduce the deposition of non-polar compounds on the cylinder wall. This indicates oxidation of fuel during the burn which in turn results in a reduction of engine deposit build up and carbon based emissions.
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