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Combustion and emissions characteristics of a compression-ignition engine using ammonia-DME mixtures

机译:使用氨DME混合物的压燃式发动机的燃烧和排放特性

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In this study operating characteristics of a compression-ignition engine using mixtures of ammonia and dimethyl ether (DME) are investigated. Ammonia can be regarded as a carbon-free fuel that can help mitigate greenhouse gas emissions. Ammonia is one of the world\u27s most synthesized chemicals and its infrastructure is well established. Recent technological advances also show that ammonia can be produced from renewable resources, making it an attractive energy carrier.In the present study, a high-pressure mixing system is developed to blending liquid ammonia with DME that serves to initiate combustion. The engine uses a modified injection system without fuel return to prevent fuel mixture from vaporizing in the return line. Results using different mixture quantities of ammonia and DME show that ammonia causes longer ignition delays and limits the engine load conditions due to its high autoignition temperature and low flame speed. The inclusion of ammonia in the fuel mixture also decreases combustion temperature, resulting in higher CO and HC emissions. NOx emissions increase due to the formation of fuel NOx when ammonia is used. However, improvements for the same operating conditions were made by increasing the injection pressure using 40%NH3-60%DME. Exhaust ammonia emissions is on the order of hundreds of ppm under the conditions tested. Soot emissions are extremely low for all cases. Double injection schemes using 20%NH3-80%DME are also employed and found not to extend engine performance. Its effects on the exhaust emissions vary with operating conditions.
机译:在这项研究中,研究了使用氨和二甲醚(DME)混合物的压燃式发动机的运行特性。氨可以被视为无碳燃料,可以帮助减少温室气体排放。氨是世界上合成度最高的化学物质之一,其基础设施完善。近期的技术进步还表明,可以利用可再生资源生产氨,使其成为有吸引力的能源载体。在本研究中,开发了一种高压混合系统,将液氨与DME混合,以引发燃烧。发动机使用改进的喷射系统,没有燃油回流,以防止燃油混合物在回流管路中蒸发。使用不同量的氨水和DME混合气的结果表明,由于氨的高自燃温度和低火焰速度,它们会导致更长的点火延迟并限制发动机负载条件。燃料混合物中包含氨气也会降低燃烧温度,导致更高的CO和HC排放量。当使用氨时,由于形成燃料NOx,NOx排放增加。但是,通过使用40%NH3-60%DME提高注射压力,对相同操作条件进行了改进。在测试条件下,氨气排放量约为数百ppm。在所有情况下,烟尘排放量都非常低。还采用了使用20%NH3-80%DME的双喷射方案,发现不会延长发动机性能。它对废气排放的影响随操作条件而变化。

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