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废塑料和微藻生物柴油的热分析和排放分析:柴油机的潜在动力源:一种可持续的方法。

Thermal and emission analysis of waste plastic and microalgae biodiesel as a potential power source for diesel engines: A sustainable approach.

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.

Microbial Engineering Lab, International Centre for Genetic Engineering and Biotechnology, New Delhi, India.

出版信息

Environ Sci Pollut Res Int. 2024 Oct;31(50):59961-59976. doi: 10.1007/s11356-024-35137-1. Epub 2024 Oct 4.

Abstract

The future of diesel engines is greatly influenced by ongoing research on alternative fuels. Renewable fuels have been researched and adopted by several nations to encourage the production and use of biodiesel. This study examines the energy conversion of waste plastic biodiesel and Spirulina microalgae biodiesel at a 20% blending ratio to analyze the behavior of a one-cylinder, 4-stroke diesel engine running at 1500 rpm with a compression ratio of 17.5. The authors evaluated, analyzed, and compared the engine's combustion, performance, and emission at an incremental engine load of 25% from 25 to 100%. The findings demonstrated that the biodiesel fuel samples generated somewhat poorer efficiency but reduced emissions from the engine. At 100% load, the percentage differences between the diesel and blended fuel samples ranged from 2.4 to 7.3% for BTE, 2.9 to 16.5% for BSFC, and 1.0 to 4.62% for BSEC; however, the PM, SO, and CO emissions were reduced by 1.6-28.8% except for NOx emissions, which are increased by up to 9.4%. Pure diesel exhibits the best performance characteristics; however, pure biodiesel exhibits the best emission characteristics. The 20% blended fuels showed promising results, as they exhibited comparable or slightly improved BTE values compared to their respective pure biodiesel fuels. The findings indicate that Spirulina microalgae biodiesel and waste plastic biodiesel have the potential to be utilized as substitute fuels for diesel engines; however, for the greatest performance and lowest emissions, their blending ratios and engine operating conditions must be optimized.

摘要

未来的柴油发动机在很大程度上受到替代燃料的持续研究的影响。可再生燃料已被几个国家研究和采用,以鼓励生物柴油的生产和使用。本研究以 20%的混合比例研究了废塑料生物柴油和螺旋藻微藻生物柴油的能量转换,以分析在压缩比为 17.5 的 1500 rpm 运行的单缸四冲程柴油发动机的行为。作者评估、分析和比较了发动机在 25%至 100%递增发动机负荷下的燃烧、性能和排放情况。研究结果表明,生物柴油燃料样品的效率稍差,但减少了发动机的排放。在 100%负载下,柴油和混合燃料样品之间的百分比差异范围为 BTE 为 2.4%至 7.3%,BSFC 为 2.9%至 16.5%,BSEC 为 1.0%至 4.62%;然而,除了 NOx 排放增加高达 9.4%外,PM、SO 和 CO 的排放量减少了 1.6%至 28.8%。纯柴油表现出最佳的性能特性;然而,纯生物柴油表现出最佳的排放特性。20%的混合燃料表现出了有希望的结果,因为它们与各自的纯生物柴油燃料相比,表现出可比或略有提高的 BTE 值。研究结果表明,螺旋藻微藻生物柴油和废塑料生物柴油有可能作为柴油发动机的替代燃料;然而,为了获得最佳的性能和最低的排放,必须优化它们的混合比例和发动机运行条件。

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