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Quantification of aldehydes emissions from alternative and renewable aviation fuels using a gas turbine engine

机译:使用燃气轮机对来自替代和可再生航空燃料的醛排放进行量化

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In this research three renewable aviation fuel blends including two HEFA (Hydrotreated Ester and Fatty Acid) blends and one FAE (Fatty Acids Ethyl Ester) blend with conventional jet A-1 along with a GTL (Gas To Liquid) fuel have been tested for their aldehydes emissions on a small gas turbine engine. Three strong ozone formation precursors: formaldehyde, acetaldehyde and acrolein were measured in the exhaust at different operational modes and compared to neat Jet A-1. The aim is to assess the impact of renewable and alternative aviation fuels on aldehydes emissions from aircraft gas turbine engines so as to provide informed knowledge for the future deployment of new fuels in aviation. The results show that formaldehyde was a major aldehyde species emitted with a fraction of around 60% of total measured aldehydes emissions for all fuels. Acrolein was the second major emitted aldehyde species with a fraction of ~30%. Acetaldehyde emissions were very low for all the fuels and below the detention limit of the instrument. The formaldehyde emissions at cold idle were up to two to threefold higher than that at full power. The fractions of formaldehyde were 6-10% and 20% of total hydrocarbon emissions in ppm at idle and full power respectively and doubled on a g kg~(-1)-fuel basis.
机译:在这项研究中,对三种可再生航空燃料混合物(包括两种HEFA(加氢酯和脂肪酸)混合物和一种FAE(脂肪酸乙基酯)与常规喷气A-1混合物以及GTL(气转液体)燃料进行了测试。小型燃气轮机发动机中的醛排放。在不同的运行模式下,对废气中的三种强臭氧形成前体:甲醛,乙醛和丙烯醛进行了测量,并与纯净的Jet A-1进行了比较。目的是评估可再生和替代航空燃料对飞机燃气涡轮发动机醛排放的影响,从而为航空中未来新燃料的未来应用提供知识。结果表明,甲醛是排放的主要醛类,占所有燃料总醛排放量的60%左右。丙烯醛是第二种主要的释放醛类,占约30%。所有燃料的乙醛排放量都很低,并且低于仪器的保留极限。冷空转时的甲醛排放量比全功率时高出两到三倍。在闲置和满功率情况下,甲醛的比例分别占总烃排放量的6-10%和20%(ppm),并以g kg〜(-1)-燃料为基础增加一倍。

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