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A comprehensive study on the effect of emulsification, solid nanoadditive and LPG dual fuel operation on engine behaviour of a WCO based compression ignition engine

机译:乳化,固体纳米添加剂和液化石油气双燃料运行对基于WCO的压燃式发动机的发动机性能的影响的综合研究

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The influence of emulsification, solid nanoadditive and liquefied petroleum gas (LPG) dual fuel operation on engine's performance, emission and combustion behaviour of a waste cooking oil (WCO) of sunflower oil based compression ignition engine was studied experimentally. Initially test engine was operated in single fuel mode with neat diesel, and neat waste cooking oil (NWCO) as fuels at various loading conditions. In the second phase WCO was converted into its emulsion (WCO-EM) and tested in the engine. The WCO-EM was further modified into solid nanoadditive emulsion (WCO-NF-EM) and tested. Finally the engine was modified to operate in dual fuel mode, and tested with LPG as the inducted fuel with WCO-NF-EM as pilot fuel. The NWCO resulted in inferior engine operation with higher smoke, HC, and CO emissions as compared to neat diesel all power outputs. Significant improvement in brake thermal efficiency was noted with all the methods attempted. Dual fuel operation with WCO-NF-EM-LPG showed highest brake thermal efficiency which is very close to diesel value. Smoke and NOx emissions were considerably reduced with all the methods. Dual fuel mode with LPG induction showed the lowest smoke emission which was still lower than diesel value. The WCO-EM and WCO-NF-EM further reduced the HC and CO emissions at all power outputs. It is concluded that the WCO can be effectively used in Diesel engines by converting into its solid nanoadditive emulsion in the unmodified engine. Combining dual fuel operation with WCO-NF-EM-LPG could achieve the engine operation similar to diesel.
机译:实验研究了乳化,固体纳米添加剂和液化石油气(LPG)的双重燃料运行对向日葵油基压燃式发动机的废油(WCO)的性能,排放和燃烧行为的影响。最初,测试发动机以纯柴油和纯净的食用油(NWCO)作为燃料在各种负载条件下以单燃料模式运行。在第二阶段中,WCO被转化为其乳液(WCO-EM),并在发动机中进行了测试。将WCO-EM进一步改性为固体纳米添加剂乳液(WCO-NF-EM)并进行了测试。最终,对发动机进行了改装,使其可以在双燃料模式下运行,并以LPG作为引燃燃料并以WCO-NF-EM作为引燃燃料进行了测试。与纯柴油的所有功率输出相比,NWCO导致发动机的劣质运行,具有更高的烟雾,HC和CO排放。尝试了所有方法,制动热效率得到了显着提高。使用WCO-NF-EM-LPG的双燃料运行显示出最高的制动热效率,非常接近柴油值。使用所有方法都可大大减少烟雾和NOx排放。带有LPG感应的双燃料模式显示出最低的烟气排放,但仍低于柴油值。 WCO-EM和WCO-NF-EM进一步减少了所有功率输出的HC和CO排放。结论是,通过在未改性的发动机中将WCO转化为其固体纳米添加剂乳液,WCO可以有效地用于柴油发动机。将双燃料运行与WCO-NF-EM-LPG结合使用可以实现类似于柴油机的发动机运行。

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