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Emission analysis of a modern Tier 4 DI diesel engine fueled by biodiesel-diesel blends with a cold flow improver (Wintron Synergy) at multiple idling conditions

机译:在多个怠速条件下,以生物柴油-柴油混合物与冷流改进剂(Wintron Synergy)为燃料的现代Tier 4 DI柴油发动机的排放分析

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A direct injection (DI) diesel engine is tested in this work with biodiesel-diesel and biodiesel-diesel cold flow additive blends for emissions at idling conditions. Biodiesel is produced from pure canola oil by transesterification process and the effect of a cold flow additive, Wintron Synergy in different proportions is examined for cold flow property (cloud point) and engine emissions. Systematic tests are undertaken over different engine speeds (800, 1000 and 1200 rpm), with 0, 20, 50 and 100 vol% of biodiesel in biodiesel-diesel and 0.25, 0.5, 1 and 2 vol% of Wintron Synergy in biodiesel-diesel-additive blends. The emission of carbon monoxide (CO), nitric oxide (NO), nitrogen dioxide (NO2), nitrogen oxides (NOx), hydrocarbon (HC), acetaldehyde and formaldehyde from different blends are measured and compared to neat diesel emissions. Test results show that B20S2 has the lowest cloud point of the fuel blends at -34.8 degrees C. Biodiesel and Synergy are found to be effective in reducing both CO and HC emissions. Biodiesel and Synergy content can increase NOx emissions. After warmup, acetaldehyde emissions remain the same for all tests at 5 ppm and formaldehyde emissions increases for all fuel blends and neat diesel. It is also found that Synergy can change the crystal size and structure of biodiesel-diesel blend B20. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项工作中,对直喷(DI)柴油发动机进行了测试,其中使用了生物柴油-柴油和生物柴油-柴油冷流添加剂混合物,以在怠速条件下进行排放。生物柴油是由纯菜籽油通过酯交换过程生产的,并通过冷流添加剂的作用,不同比例的Wintron Synergy进行了冷流特性(浊点)和发动机排放的检测。系统测试是在不同的发动机转速(800、1000和1200 rpm)下进行的,其中生物柴油中生物柴油的体积分数为0、20、50和100,生物柴油中Wintron Synergy的体积分数分别为0.25、0.5、1和2, -添加剂混合。测量了来自不同混合物的一氧化碳(CO),一氧化氮(NO),二氧化氮(NO2),氮氧化物(NOx),碳氢化合物(HC),乙醛和甲醛的排放,并与纯柴油排放进行了比较。测试结果表明,B2O2在-34.8摄氏度下具有最低的混浊点。发现生物柴油和协同作用可有效减少CO和HC排放。生物柴油和协同作用的含量会增加NOx的排放。预热后,所有测试中的乙醛排放均保持在5 ppm不变,所有混合燃料和纯柴油的甲醛排放均增加。还发现协同作用可以改变生物柴油-柴油共混物B20的晶体尺寸和结构。 (C)2016 Elsevier Ltd.保留所有权利。

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