首页> 外文期刊>Fuel >A detailed investigation on the performance, combustion, and exhaust emission characteristics of a diesel engine running on the blend of diesel fuel, biodiesel and 1-heptanol (C7 alcohol) as a next-generation higher alcohol
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A detailed investigation on the performance, combustion, and exhaust emission characteristics of a diesel engine running on the blend of diesel fuel, biodiesel and 1-heptanol (C7 alcohol) as a next-generation higher alcohol

机译:对柴油燃料,生物柴油和1-庚醇(C7酒精)混合的柴油机的性能,燃烧和排放特性进行详细研究,作为下一代高级酒精

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摘要

Alcohols are exceptional alternative fuels for the utilization in the compression-ignition (CI) engine due to their built-in fuel improving characteristics such as higher calorific value, higher cetane number, etc. Contrary to the lower-chain alcohols (methanol-C1, ethanol-C2, and propanol-C3), higher alcohols have an encouraging candidate for future diesel engine applications. Among the higher alcohols, 1-heptanol, having seven carbon atoms in the chemical structure, has preferable fuel properties. Therefore, there is a need to perform it as well as its blends with diesel fuel and biodiesel in the CI engine for extracting the characteristics of performance, emissions, and combustion. The objective of the present research work was to investigate the engine performance, exhaust gas emissions, and combustion behavior of a single-cylinder, four-stroke, water-cooled, naturally-aspirated, direct-injection (DI) diesel engine running on the binary blends of 1-heptanol/diesel fuel and biodiesel/diesel fuel, and finally the ternary type of their derivations of 1-heptanol/biodiesel/diesel fuel. For the experimental usage, the biodiesel fuel was synthesized from the peanut oil through the transesterification process in the presence of potassium hydroxide and methanol. The several tested fuel samples were prepared by splash blending technique as B20 (20% peanut oil biodiesel and 80% diesel fuel), Hp20 (20% 1-heptanol and 80% diesel fuel), B20Hp20 (20% peanut oil biodiesel, 20% 1-heptanol and 60% diesel fuel). To acquire the engine characteristics, the engine tests were carried out at four engine loads (25%, 50%, 75%, and 100%) with a fixed engine speed of 1500 rpm. The experimental outcomes revealed that the least brake specific energy consumptions for diesel fuel, B20, Hp20, B20Hp20, and B100 were found to be at 8.78 MJ/kWh, 8.90 MJ/kWh, 8.85 MJ/kWh, 8.94 MJ/kWh, and 10.29 MJ/kWh, respectively at 100% load while the maximum brake thermal efficiency values were obtained as 40.81%, 40.46%, 40.67%, 40.27%, and 35.00, respectively. At 100% load, the peak heat release rate for B20, Hp20 and B20Hp20 were found to be at 37.53 J/deg, 37.80 J/deg and 37.91 J/deg, respectively while diesel fuel and peanut oil biodiesel have in order of 40.22 J/deg and 27.66 J/deg. The addition of 1-heptanol as an oxygenated additive into the diesel fuel and biodiesel/diesel fuel blend caused to decreasing CO and unburned HC emissions while increasing CO2, O-2, and NOX emissions as compared to diesel fuel. It can be concluded that this paper discusses the viability of suggesting biodiesel-diesel-alcohol blends to supply the future energy demands of the world.
机译:由于其内置燃料改善特征,例如诸如较高的醇(甲醇-C1,甲醇-C1)的内置燃料改善特性,醇是一种特殊的替代燃料,用于采用诸如较高的热值,较高的十六烷值等(甲醇-C1,乙醇-C2和丙醇-C3),较高的醇类对未来柴油发动机应用的令人鼓舞的候选人。在较高的醇中,在化学结构中具有七个碳原子的1-庚醇具有优选的燃料特性。因此,需要执行它以及其在CI发动机中的柴油燃料和生物柴油的混合物,以提取性能,排放和燃烧的特性。目前研究工作的目的是研究单缸,四冲程,水冷,天然吸气,直喷(DI)柴油发动机的发动机性能,废气排放和燃烧行为1-庚醇/柴油燃料和生物柴油/柴油燃料的二元融合,最后是其1-庚醇/生物柴油/柴油燃料的三元型。对于实验使用,通过在氢氧化钾和甲醇存在下通过酯交换过程从花生油中合成生物柴油。通过飞溅混合技术作为B20(20%花生油生物柴油和80%柴油燃料),HP20(20%1-庚醇和80%柴油),B20HP20(20%花生油生物柴油,20% 1-庚醇和60%的柴油燃料)。为了获得发动机特性,发动机试验以四个发动机负载(25%,50%,75%和100%)进行,固定发动机速度为1500rpm。实验结果表明,柴油燃料,B20,HP20,B20HP20和B100的最低刹车特异性能量消耗量为8.78 MJ / KWH,8.90 MJ / KWH,8.85 MJ / KWH,8.94 MJ / KWH和10.29 MJ / kWh分别在100%负载下,同时获得最大制动热效率值,分别获得40.81%,40.46%,40.67%,40.27%和35.00。在100%负载下,发现B20,HP20和B20HP20的峰值热释放速率分别为37.53J / deg,37.80J / Deg和37.91 j / deg,而柴油燃料和花生油生物柴油均为40.22 j / deg和27.66 j / deg。将1-庚醇作为氧化添加剂加入柴油燃料和生物柴油/柴油燃料共混物,而与柴油燃料相比增加CO 2,O-2和NOx排放,同时增加CO和未燃烧的HC排放。可以得出结论,本文讨论了建议生物柴油 - 柴油 - 酒精共混物供给世界未来能源需求的可行性。

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