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Effect of 5-membered bicyclic hydrocarbon additives on nanostructural disorder and oxidative reactivity of diffusion flame-generated diesel soot

机译:5元双环烃添加剂对扩散火焰生成柴油烟灰纳米结构病症及氧化反应性的影响

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摘要

Soot emission from diesel engines is of serious concern, as it is carcinogenic and remains suspended in air for a long time to cause adverse effects on human health and the environment. A way to reduce soot emission is by altering soot nanostructures by introducing fringe curvatures to enhance reactivity and increase oxidation. Such disorder in soot nanostructure can be initiated by the introduction of 5-membered rings into 6-membered, graphite-like soot structures. This study investigates the effect of the addition of norbornane, a saturated, 5-membered bicyclic hydrocarbon additive to diesel on the physicochemical properties, sooting propensity, structural disorders, and the oxidative reactivity of soot. The physicochemical analysis revealed that the threshold sooting index (TSI) of the blend is reduced to 29.5 at an optimum blending percentage of 10% norbornane-90% Diesel (NBD) as compared to the TSI of 37 for diesel. The analyses using XRD, Raman, HRTEM, and EDX indicated that the addition of this additive resulted in an increased soot nanostructural disorder, smaller PAH size, increased fringe curvature, and significantly greater aliphatic content in soot as compared to an unsaturated 5-membered bicyclic additive, dicyclopentadiene (DCPD). The reactivity studies confirmed that NBD soot is easily oxidized in air, since it requires a lower initial activation energy (90 kJ/mol) as compared to DCPD (120 kJ/mol) and pure diesel soots (170 kJ/mol). Thus, norbornane, a saturated 5-membered bicyclic compound, which is available as a by-product of polymer industry and in crude oil, can serve as a potential fuel additive for designing advanced fuels.
机译:来自柴油发动机的烟灰排放是严重的关注,因为它是致癌性的,并且在空气中保持悬浮长时间,对人类健康和环境产生不利影响。通过引入边缘曲率以增强反应性并增加氧化来减少烟灰发射的方法是通过改变烟灰纳米结构。烟灰纳米结构中的这种病症可以通过将5元环引入6-元,石墨状烟灰结构来引发。本研究研究了将降冰片烷,饱和5-元双环烃添加剂加入柴油对柴油的影响,烟灰的柴油和烟灰的氧化反应性。物理化学分析表明,与柴油的TSI相比,混合物的阈值烟灰指数(TSI)以最佳的增生百分比减少到10%降冰片烷-90%柴油(NBD)的最佳混合百分比。使用XRD,拉曼,HRTEM和EDX的分析表明,与不饱和5-元双环相比,加入该添加剂,导致烟灰纳米结构障碍增加,较小的PAH纳米结构障碍,较小的PAH尺寸,高度曲率增加,以及烟灰中的脂族含量显着更大添加剂,二环戊二烯(DCPD)。反应性研究证实,与DCPD(120kJ / mol)和纯柴油(170kJ / mol)相比,它需要较低的初始活化能量(90kJ / mol),所以Nbd烟灰易于氧化。因此,饱和5-元双环化合物,作为聚合物工业和原油的副产物可用的饱和5-元双环化合物可用作设计先进燃料的潜在燃料添加剂。

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