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各种新型生物柴油燃料在压燃式发动机中的热评估和排放分析:一种可持续的减排方法。

Comparative thermal assessment and emission analysis of various green biodiesel from novel feedstocks for CI engines: a sustainable approach towards emission reduction.

机构信息

Sustainable Energy Technology Laboratory, Department of Mechanical Engineering, PDPM Indian Institute of Information Technology, Design, and Manufacturing, Jabalpur, Madhya Pradesh, India.

出版信息

Environ Sci Pollut Res Int. 2024 Jun;31(27):39650-39662. doi: 10.1007/s11356-024-33817-6. Epub 2024 Jun 3.

Abstract

In order to replace conventional diesel, biodiesel from various feedstocks is being researched for diesel engines. This study explores novel biodiesel blends produced from unconventional resources such as mentha piperita (peppermint), pontederia crassipes (water hyacinth), tamarindus indica (tamarind), and trichosanthes cucumerina (snake gourd) to assess the outcomes of a diesel engine. The fuel samples are designated as MP20, PC20, TC20, and TI20, which consist of 80% biodiesel and 20% diesel. The assessment is carried out on a four-stroke, one-cylinder diesel engine that is water-cooled and set to operate at 1500 rpm with a 17.5 compression ratio under various engine loading scenarios with quarter-incremental loading from one-fourth to full loading conditions. The fuel samples are injected with 220 bar injection pressure into the combustion chamber 23° before TDC. An extensive analysis of engine parameters is performed using engine configuration, fuel characteristics, and applied boundary conditions. This comprises brake-specific energy consumption (BSEC), fuel consumption (BSFC), thermal efficiency (BTE), cylinder pressure (CP), heat release rate (HRR), particulate matter (PM), nitrogen oxide (NOx), and carbon dioxide (CO) emissions. At 100% load, the biodiesel blends show an increase in BSFC (2.8-12.6%) and BSEC (1.1-7.1%) but a minor decrease in CP (0.9-6.9%), HRR (0.8-16.2%), and BTE (1.2-2.9%). For biodiesel blends at full engine load, the emissions of PM (8.9-21.4%), NOx (1.4-16.2%) and CO (2.4-7.9%) are all significantly reduced. The results emphasize the distinct benefits of biodiesel blends, demonstrating enhanced engine performance and substantial decreases in emissions, which supports the aim of providing sustainable energy solutions.

摘要

为了替代传统的柴油,人们正在研究各种原料的生物柴油,以用于柴油机。本研究探索了从非常规资源(如留兰香、水葫芦、罗望子和苦瓜)中生产新型生物柴油混合物,以评估柴油机的结果。这些燃料样本被指定为 MP20、PC20、TC20 和 TI20,它们由 80%的生物柴油和 20%的柴油组成。评估是在一台四冲程、单缸、水冷柴油机上进行的,该柴油机的转速为 1500rpm,压缩比为 17.5,在各种发动机负荷情况下进行,负荷从四分之一逐渐增加到全负荷条件。燃料样本以 220 巴的喷射压力喷射到燃烧室中,在 23°之前喷射到上止点前。使用发动机配置、燃料特性和应用边界条件对发动机参数进行了广泛分析。这包括比能消耗(BSEC)、燃料消耗(BSFC)、热效率(BTE)、缸压(CP)、放热率(HRR)、颗粒物(PM)、氮氧化物(NOx)和二氧化碳(CO)排放。在 100%负荷下,生物柴油混合物的 BSFC(2.8-12.6%)和 BSEC(1.1-7.1%)增加,但 CP(0.9-6.9%)、HRR(0.8-16.2%)和 BTE(1.2-2.9%)略有下降。对于全负荷下的生物柴油混合物,PM(8.9-21.4%)、NOx(1.4-16.2%)和 CO(2.4-7.9%)的排放都显著降低。结果强调了生物柴油混合物的明显优势,表明发动机性能得到了提高,排放大幅减少,这支持了提供可持续能源解决方案的目标。

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