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Investigation of Aldehyde and VOC Emissions during Cold Start and Hot Engine Operations using 100 Biofuels for a DI Engine

机译:使用100%生物燃料对DI发动机冷启动和热发动机运营过程中醛和VOC排放的研究

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Aldehydes and other Volatile Organic Compounds (VOC) are assessed under cold start and steady state conditions using a Perkins Phaser 6-liter diesel engine. A comparison is made between petroleum diesel fuel (PD), 100% biodiesel (WME) and 100% rapeseed oil (RSO). A Temet FTIR was used to determine aldehydes including formaldehyde, acetaldehyde and acrolein. The diesel engine was cold started at room temperature using a step start up procedure that kept the power output constant at two steady state conditions: 23 kW and 47 kW. Very little difference was observed between petroleum diesel and biodiesel aldehyde emissions at either steady state conditions or during cold start. There was, however, an increase in aldehydes at steady state for rapeseed oil, particularly at low load, but only for from ~10 ppm to 25 ppm for formaldehyde (i.e., 0.12 g/kWh to 0.37 g/kWh). During cold start conditions, the emissions were significantly higher for rapeseed oil than for petroleum diesel. Other volatile organic compounds investigated included hydrogen cyanide, acetylene, formic acid and iso-butene. The influence of the oxidation catalyst on these speciated compounds was also determined.
机译:使用Perkins Phaser 6升柴油发动机在冷启动和稳态条件下评估醛和其他挥发性有机化合物(VOC)。在石油柴油燃料(Pd),100%生物柴油(WME)和100%菜籽油(RSO)之间进行了比较。使用TEMET FTIR来确定包括甲醛,乙醛和丙烯醛在内的醛。使用步进启动程序在室温下冷启动柴油发动机,使电源输出恒定在两个稳态条件下保持:23 kW和47 kW。在稳定状态条件下或冷启动期间,石油柴油和生物柴油醛排放之间观察到差异很小。然而,在油菜籽油的稳定状态下,醛类增加,特别是在低负荷下,但仅用于甲醛〜10ppm至25ppm(即0.12g / kWh至0.37g / kWh)。在冷启动条件下,油菜籽油的排放显着高于石油柴油。研究的其他挥发性有机化合物包括氰化氢,乙炔,甲酸和异丁烯。还测定了氧化催化剂对这些所以的这些试样的化合物的影响。

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