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Characterization of Particulate from Biodiesel-Blended Engine Equipped with Exhaust Nonthermal Plasma Charger Using Thermo-Gravimetric Analysis

机译:使用热重分析,配备有废气非热等离子体充电器的生物柴油混合发动机的颗粒的特征

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Encouraging the use of alternative fuels available in Thailand is mainly due to fuel crisis within the past few decades. The government has recently drafted a renewable energy long-term plan to increase biofuel production. This has emboldened biodiesel to be used as fuel for agriculture and transportation, in particular. Diesel engines are promising for reducing carbon dioxide emissions related fuel energy consumption. Ordinarily, diesel combustion generates particulate matter and nitrogen oxides in trade-off relationship. However, advanced techniques for engine technology and aftertreatment devices have been abundantly developed to mitigate these hindrances. To break the trade-off emissions, an example technique is to fuel engines with biodiesel incorporated with exhaust gas recirculation. Among available options, nonthermal plasma (NTP) is one of the techniques that charges exhaust gas with high power electricity to reduce some emissions. This paper investigates on a light-duty diesel engine running on biodiesel blends with steady-state controlled operational parameters. An NTP device is equipped to the exhaust system with load variation. Exhaust gas are measured prior to- and after- the NTP reactor in terms of smoke opacity and compositions, categorized by a thermo-gravimetric analysis. The NTP equipped engine can normally operate with lower gaseous emissions than those of non NTP equipped engine. This shows even more benefits when the engine is fuelled with biodiesel. It is suggested that used cars running on biodiesel blends can be modified with this technology in order to improve exhaust emissions to meet forthcoming tighten emission regulations as it does not require complex modification.
机译:鼓励使用在泰国可替代燃料主要是由于在过去的几十年里燃料危机。政府最近起草了可再生能源的长期计划,以增加生物燃料的生产。这促使生物柴油作为燃料,农业和运输,尤其如此。柴油发动机是有希望的减少与燃料能源消耗的二氧化碳排放量。通常,柴油燃烧产生的折衷关系颗粒物和氮氧化物。然而,对于发动机技术和后处理装置的先进技术已经大量开发,以减轻这些障碍。为了打破折衷排放,一个示例技术是与生物柴油燃料发动机具有排气再循环并入。中可用的选项,非热等离子体(NTP)是进行充电废气具有高功率电,以减少一些排放的技术之一。对带有稳态控制的操作参数生物柴油混合物轻型柴油发动机运行本文研究。一个NTP装置配备与负载变化的排气系统。废气测量之前TO-和离职后在烟度和组合物方面的NTP反应器中,通过热重分析分类。在NTP搭载发动机通常可以以较低的气体排放物比非NTP搭载发动机的操作。这说明即使在发动机燃用生物柴油的更多的好处。有人建议,二手车的生物柴油混合运行可以用这个技术,以改善废气排放,满足即将收紧的排放法规,因为它并不需要复杂的修改进行修改。

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