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Pollutant emissions, performance and combustion behaviour assessment of an Si gas engine fuelled with Lev gas containing carbon monoxide and hydrogen diluted by nitrogen

机译:含一氧化碳和氮气稀释的含Lev气体的Si燃气发动机的污染物排放,性能和燃烧行为评估

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This paper includes the experimental test data of an SI engine fuelled with simulated LCV gas (Low Calorific Value), which resembles synthesis gas in composition. The LCV gas was simulated by a mixture of carbon monoxide, hydrogen and nitrogen. During the experiment, the lower heating value of the LCV gas was altered by dilution with nitrogen. A single-cylinder Honda GX270 engine was adopted in the experiment to assess the impact of LCV gas on the system performance. This engine is typically used to power various machines and for electrical energy production in small generator sets. A modified engine was connected to an electric generator, which was loaded with an electric resistor. Engine operation was controlled using a microprocessor controller. All tests were performed at constant engine speed (3000 rpm). The engine was working at wide-open throttle for all mixtures. All mixtures were burned at stoichiometric conditions and with fixed value of ignition timing (30 deg bTDC). The indicated performance of the SI engine was evaluated based on the in-cylinder pressure measurements. No significant impact on the main internal parameters of the tested SI engine fuelled with simulated LCV gas diluted by nitrogen was observed. The experimental tests showed that the combustion duration increased for the mixtures with higher content of inert gas. Increase in the LHV raised the specific emissions of NOx and decreased specific emissions of CO and HC. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文包括以模拟LCV气体(低热值)为燃料的SI发动机的实验测试数据,其组成类似于合成气。用一氧化碳,氢气和氮气的混合物模拟LCV气体。在实验过程中,通过用氮气稀释改变了LCV气体的较低热值。实验中采用了单缸本田GX270发动机,以评估LCV气体对系统性能的影响。该发动机通常用于为各种机器提供动力,并用于小型发电机组中的电能生产。改进的发动机连接到发电机,发电机上装有电阻。使用微处理器控制器控制发动机的运行。所有测试均在恒定发动机转速(3000 rpm)下进行。发动机在所有混合气的全开节气门下工作。所有混合物均在化学计量条件下以固定的点火正时(30 deg bTDC)燃烧。基于缸内压力测量来评估SI发动机的指示性能。观察到对用氮气稀释的模拟LCV气体供油的被测试SI发动机的主要内部参数没有重大影响。实验测试表明,惰性气体含量较高的混合物的燃烧持续时间增加。 LHV的增加增加了NOx的排放量,并减少了CO和HC的排放量。 (C)2020 Hydrogen Energy Publications LLC。由Elsevier Ltd.出版。保留所有权利。

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