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Performance and Emission Characteristics of a Gas Turbine Engine Burning Soap-Derived Biokerosene/Jet A-1 Blends

机译:燃气涡轮发动机燃烧肥皂衍生的生物环/喷射A-1混合物的性能和排放特性

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There has been an increased interest as regards the use of biofuels in aviation gas turbine engines due to global efforts to reduce greenhouse gas emissions along with fluctuating jet fuel prices. This work researches the use of soap-derived biokerosene (SBK) in aircraft engines. SBK is a promising biofuel option for emerging tropical countries as its production requires a relatively simple technology, and its feedstock sources are abundant in these countries. Blends of Jet A-1 with up to 20 vol.% SBK were tested on a 1S/60 Rover gas turbine engine over a range of brake powers to measure engine performance and emissions. The results were then compared to those of pure Jet A-1. It shows that the engine running on SBK/Jet A-1 blends and pure Jet A-1 have almost similar engine performance parameters including engine efficiency, specific fuel consumption (SFC), turbine inlet temperature (TIT), and exhaust gas temperature (EGT). On the other hand, increasing the volume fraction of SBK in the fuel blends with Jet A-1 leads to a slight increase in carbon monoxide (CO) and HC emissions, while insignificant differences in the nitrogen oxides (NO_x) emissions were found. From this study, some valuable recommendations could be found to improve the feasibility of SBK for use as an alternative aviation fuel.
机译:由于全球努力减少温室气体排放以及波动的喷射燃料价格,因此在航空燃气轮机发动机中使用生物燃料在航空燃气涡轮机发动机的使用增加了兴趣。这项工作研究了飞机发动机中的肥皂衍生的生物环(SBK)。 SBK是一个有希望的生物燃料选择,因为它的生产需要一种相对简单的技术,其原料来源在这些国家越来越丰富。喷射A-1的混合物,最高可达20体积的1S / 60流动瓦尔涡轮发动机在一系列制动功率上进行测试,以测量发动机性能和排放。然后将结果与纯喷射A-1相比。它表明,在SBK / JET A-1混合物上运行的发动机和纯喷射A-1具有几乎类似的发动机性能参数,包括发动机效率,特定燃料消耗(SFC),涡轮机入口温度(山雀)和废气温度(EGT )。另一方面,增加射流A-1中燃料混合物中SBK的体积分数导致一氧化碳(CO)和HC排放的略微增加,而氮氧化物(NO_X)排放的微不足道差异。从本研究开始,可以发现一些有价值的建议改善SBK作为替代航空燃料的可行性。

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