首页> 外文会议>FISITA World Automotive Congress >PERFORMANCE AND EMISSION CHARACTERTISTICS OF AN IDI DIESEL GENERATOR FUELED WITH WOOD PYROLYSIS OIL-BUTANOL BLENDED FUELS
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PERFORMANCE AND EMISSION CHARACTERTISTICS OF AN IDI DIESEL GENERATOR FUELED WITH WOOD PYROLYSIS OIL-BUTANOL BLENDED FUELS

机译:用木质热解油丁醇混合燃料加油的IDI柴油发电机的性能和排放特性

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Wood pyrolysis oil (WPO) derived from wood has been regarded as an alternative fuel to be used in diesel engines. However, direct use of WPO in a diesel engine is not possible due to the low energy density, high acidity, high viscosity, high water content and low cetane number of WPO. The most widely used approach to improve the fuel qualities of WPO are blending of WPO with other hydrocarbon fuels which have higher cetane number. Generally, WPO and fossil fuels are not usually blended because of its different polarity; a cumbersome process called emulsification is needed to mix WPO and fossil fuels with appropriate surfactants. However, the emulsification process needs additional time and costs, and clogging and polymerization problems in fuel supply system are still occurred. Polymerization of WPO can be prevented by diluting WPO in alcohol fuels. Early mixing with alcohol fuels has an added benefit of significantly improving the storage and handling properties of WPO. WPO-alcohol blended fuel still does not produce the self-ignition; hence additional cetane enhancements should be added in the blended fuel. In this study, we would like to use WPO through the blending with n-butanol and cetane enhancements (PEG 400 and 2-EHN). Experimental results showed that highly stable engine operation was obtained for WPO-blended fuels with a maximum WPO content of 20 wt%. The combustion of WPO-butanol blended fuels produced slightly higher hydrocarbon (HC) and carbon monoxide (CO) emissions than diesel combustion due to the incomplete combustion of the blended fuels. And nitrogen oxides (NO_x) emissions for the blended fuel were higher than those of diesel due to the high oxygen content of the blended fuels. PM generation from the blended fuels was almost zero due to the high oxygen content of the WPO and n-butanol.
机译:源自木材木热解油(WPO)已被视为在柴油发动机中使用的替代燃料。但是,在柴油发动机中直接使用WPO的是不可能的,由于能量密度低,高酸度,高粘度,高水含量和WPO的低十六烷值。最广泛使用的方法,以提高WPO的燃料质量被与具有较高的十六烷值其它烃燃料掺混WPO的。通常,WPO和化石燃料通常不混合,因为它的不同极性的;需要称为乳化一个麻烦的过程,以WPO和化石燃料用适当的表面活性剂混合。然而,乳化工艺需求仍然发生额外的时间和成本,并在燃料供应系统堵塞和聚合的问题。可以通过在酒精燃料稀释WPO被防止WPO的聚合。用酒精燃料早期混合具有显著改善贮存和处理WPO的性质的额外的好处。 WPO-醇混合燃料仍然不产生自点火;因此附加的十六烷值改进应在混合燃料添加。在这项研究中,我们想通过用正丁醇和十六烷值改进(PEG 400和2-EHN)混合使用WPO。实验结果表明对于具有20重量%的最大WPO内容WPO混合燃料得到的是高度稳定的发动机运转。 WPO丁醇的混合燃烧燃料所产生稍高的烃(HC)和一氧化碳(CO)的排放比柴油燃烧由于混合燃料的不完全燃烧。和氮氧化物(NO_x的)排放混合燃料由于混合燃料中的氧含量高均较柴油更高。 PM产生从混合燃料几乎为零由于WPO的氧含量高和正丁醇。

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