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Effects of Lubricating Oil Additives on the Microphysical Properties of Diesel Exhaust Particulate Matter

机译:润滑油添加剂对柴油机排气颗粒物质微神科性质的影响

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In this work, experiments were performed on a diesel engine bench using different experimental fuels prepared by mixing diesel with three lubricating oil additives (LOAs), namely, an antioxidant, a detergent and a foam inhibitor. Diesel exhaust particulate matter (DEPM) samples were subsequently collected. The effects of the LOAs on the micromorphological and microstructural characteristics of the DEPM and its degree of graphitization were investigated using a combination of analytical methods (scanning electron microscopy, transmission electron microscopy and Raman spectroscopy) in conjunction with image processing software. The results showed the following: The DEPM diameter was determined by the polycyclic aromatic hydrocarbon (PAH) content of the fuel. Unburned PAHs caused the organic matter component of the DEPM to precipitate between the lamellae of its primary carbon particles (PCPs). The addition of the antioxidant to the fuel resulted in increased chemical heterogeneity of the DEPM. Furthermore, the D peak in the Raman spectrum of this DEPM had the highest intensity. The DEPM generated from combustion of the foam inhibitor-diesel fuel had the largest average PCP crystallite size; the addition of the foam inhibitor increased the degree of graphitization of the DEPM, and the graphite crystallites in this DEPM were the largest (4.65 nm). The DEPM generated from the combustion of the detergent-diesel fuel had the largest PCP interlayer spacing (mainly in the range of 0.42-0.44 nm). The LOAs did not significantly impact the C-C bond length in the DEPM graphite lattice.
机译:在这项工作中,使用通过用三种润滑油添加剂(LOAs)的柴油和抗氧化剂,洗涤剂和泡沫抑制剂混合柴油制备的不同实验燃料对柴油发动机长凳进行实验。随后收集柴油废气颗粒物质(DEPM)样品。利用分析方法(扫描电子显微镜,透射电子显微镜和拉曼光谱)结合图像处理软件,研究了LOA对DEPM微晶和微观结构特性的影响及其石墨化程度。结果表明以下:DEPM直径由燃料的多环芳烃(PAH)含量确定。未燃烧的PAHS导致DEPM的有机物质成分在其初级碳颗粒(PCP)的薄片之间沉淀。向燃料中加入抗氧化剂导致DEPM的化学异质性增加。此外,该DEPM的拉曼光谱中的D峰具有最高的强度。由泡沫抑制剂 - 柴油燃料的燃烧产生的DEPM具有最大的平均PCP微晶尺寸;泡沫抑制剂的添加增加了DEPM的石墨化程度,该DEPM中的石墨微晶是最大的(4.65nm)。从洗涤剂柴油燃料的燃烧产生的DEPM具有最大的PCP层间距(主要在0.42-0.44nm的范围内)。 LOA没有显着影响DEPM石墨晶格中的C-C键长度。

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