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Comparison Study on Combustion and Emission Characteristics of ABE/IBE-Diesel Blends in a Common-Rreail Diesel Engine

机译:ABE / IBE-DIESEL混合物在普通RREEIL柴油发动机中燃烧和排放特性的比较研究

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Bio-butanol has been considered as a promising alternative fuel for internal combustion engines due to its advantageous physicochemical properties. However, the further development of bio-butanol is inhibited by its high recovery cost and low production efficiency. Hence, the goal of this study is to evaluate two upstream products from different fermentation processes of bio-butanol, namely acetone-butanol-ethanol (ABE) and isopropanol-butanol-ethanol (IBE), as alternative fuels for diesel. The experimental comparison is conducted on a single-cylinder and common-rail diesel engine under various main injection timings (MIT) and equivalent engine load (EEL) conditions. The experimental results show that ABE and IBE significantly affect the combustion phasing. The start of combustion (SOC) is retarded when ABE and IBE are mixed with diesel. Furthermore, the ABE/IBE-diesel blends are more sensitive to the changes in MIT compared with that of pure diesel. When the MIT is advanced, the peak in-cylinder pressure and heat release rate (HRR) of ABE20 and IBE20 are lower than that of pure diesel but eventually are higher. Brake thermal efficiency is slightly reduced with the addition of ABE or IBE into diesel under tested conditions. But the reduction for IBE20 is not noticeable. Both ABE and IBE mixtures show a potential to reduce NO_x and soot emissions. However, the NO_x emissions from the ABE and IBE mixtures are slightly higher than that of pure diesel when the MIT is advanced to 8°CA BTDC. These results indicate that ABE/IBE-diesel blends, coupled with an optimized injection, can effectively control the exhaust emissions of diesel engines.
机译:由于其有利的物理化学性质,生物丁醇被认为是内燃机的有希望的替代燃料。然而,通过其高回收成本和低生产效率抑制生物丁醇的进一步发展。因此,本研究的目标是评估来自生物丁醇的不同发酵过程的两个上游产品,即丙酮 - 丁醇 - 乙醇(ABE)和异丙醇 - 丁醇 - 乙醇(IBE)作为柴油的替代燃料。在各种主喷射定时(MIT)和等效发动机负荷(EEL)条件下,在单缸和共轨柴油发动机上进行实验比较。实验结果表明,ABE和IBE显着影响燃烧相位。当ABE和IBE与柴油混合时,燃烧的开始(SOC)被延迟。此外,与纯柴油相比,ABE / IBE-柴油混合物对麻省理工学院的变化更敏感。当MIT先进时,ABE20和IBE20的峰值压力和热释放速率(HRR)低于纯柴油的峰值压力(HRR),但最终较高。在经过测试的条件下,通过添加ABE或IBE进入柴油,制动热效率略微减少。但IBE20的减少不明显。 ABE和IBE混合物都显示出降低NO_X和烟灰排放的潜力。然而,当麻省理工学院前进到8°Ca BTDC时,ABE和IBE混合物的NO_X排放略高于纯柴油。这些结果表明,与优化注射相结合的ABE / IBE-柴油混合物,可以有效地控制柴油发动机的废气排放。

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