Effects of ethylene glycol ethers on diesel fuel properties and emissions in a diesel engine

被引:21
|
作者
Gomez-Cuenca, F. [2 ]
Gomez-Marin, M. [2 ]
Folgueras-Diaz, M. B. [1 ]
机构
[1] Univ Oviedo, Dept Energy, Oviedo 33004, Spain
[2] CLH, Cent Lab, Madrid 28045, Spain
关键词
Diesel fuel; Monoethylene glycol ethyl ether; Monoethylene glycol butyl ether; Diethylene glycol ethyl ether; Fuel properties; Emissions; OXYGEN ENRICHMENT; EXHAUST EMISSIONS; COMBUSTION; PERFORMANCE; VISCOSITY; BIODIESEL;
D O I
10.1016/j.enconman.2011.04.017
中图分类号
O414.1 [热力学];
学科分类号
摘要
The effect of ethylene glycol ethers on both the diesel fuel characteristics and the exhaust emissions (CO, NOx, smoke and hydrocarbons) from a diesel engine was studied. The ethers used were monoethylene glycol ethyl ether (EGEE), monoethylene glycol butyl ether (EGBE), diethylene glycol ethyl ether (DEGEE). The above effect was studied in two forms: first by determining the modification of base diesel fuel properties by using blends with oxygen concentration around 4 wt.%, and second by determining the emission reductions for blends with low oxygen content (1 wt.%) and with 2.5 wt.% of oxygen content. The addition of DEGEE enhances base diesel fuel cetane number, but EGEE and EGBE decrease it. For concentrations of >= 4 wt.% of oxygen, EGEE and diesel fuel can show immiscibility problems at low temperatures (<= 0 degrees C). Also, every oxygenated compound, according to its boiling point, modifies the distillation curve at low temperatures and the distillate percentage increases. These compounds have a positive effect on diesel fuel lubricity, and slightly decrease its viscosity. Blends with 1 and 2.5 wt.% oxygen concentrations were used in order to determine their influence on emissions at both full and medium loads and different engine speeds. Generally, all compounds help to reduce CO, and hydrocarbon emissions, but not smoke. The best results were obtained for blends with 2.5 wt.% of oxygen. At this concentration, the additive efficiency in decreasing order was EGEE > DEGEE > EGBE for CO emissions and DGEE > EGEE > EGBE for hydrocarbon emissions. For NOx, both its behaviour and the sequence are opposite to that of CO. (C) 2011 Elsevier Ltd. All rights reserved.
引用
收藏
页码:3027 / 3033
页数:7
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