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Performance and exhaust emission of turpentine oil powered direct injection diesel engine

机译:松节油动力直喷柴油机的性能和废气排放

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This paper presents the results of experimental work carried out to evaluate the combustion performance and exhaust emission characteristics of turpentine oil fuel (TPOF) blended with conventional diesel fuel (DF) fueled in a diesel engine. Turpentine oil derived from pyrolysis mechanism or resin obtained from pine tree dissolved in a volatile liquid can be used as a bio-fuel due to its properties. The test engine was fully instrumented to provide all the required measurements for determination of the needed combustion, performance and exhaust emission variables. The physical and chemical properties of the test fuels were earlier determined in accordance to the ASTM standards.rnResults: Indicated that the engine operating on turpentine oil fuel at manufacture's injection pressure -time setting (20.5 MPa and 23° BTDC) had lower carbon monoxide (CO), unburned hydrocarbons (HC), oxides of nitrogen (NO_x), smoke level and particulate matter. Further the results showed that the addition of 30% TPOF with DF produced higher brake power and net heat release rate with a net reduction in exhaust emissions such as CO, HC, NO_x, smoke and particulate matter. Above 30% TPOF blends, such as 40% and 50% TPOF blends, developed lower brake power and net heat release rate were noted due to the fuels lower calorific value; nevertheless, reduced emissions were still noted.
机译:本文介绍了为评估松节油燃料(TPOF)与柴油发动机中常规柴油(DF)混合的燃烧性能和废气排放特性而进行的实验工作的结果。从热解机理得到的松节油或从松树中溶解在挥发性液体中得到的树脂由于其特性可以用作生物燃料。测试引擎经过全面测试,可提供所有必需的测量值,以确定所需的燃烧,性能和废气排放变量。结果:表明在制造商的喷射压力-时间设定(20.5 MPa和23°BTDC)下,使用松节油燃料运行的发动机具有较低的一氧化碳( CO),未燃烧的碳氢化合物(HC),氮氧化物(NO_x),烟雾水平和颗粒物。进一步的结果表明,在DF中添加30%TPOF可以产生更高的制动功率和净放热率,并净减少废气排放,例如CO,HC,NO_x,烟和颗粒物。 TPOF混合物含量超过30%(例如TPOF和40%TPOF混合物)时,由于燃料的发热量较低,因此出现了较低的制动功率和净散热率。但是,仍然注意到减少了排放。

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