使用添加剂混合生物燃料提高 CI 发动机性能--综述

Q3 Materials Science
Harish Kumar, Himansh Kumar
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引用次数: 0

摘要

对可持续和环境友好型能源的需求日益增长,这推动了生物燃料在各种应用中的研发工作,尤其是在内燃机中的应用。微乳化技术是一种替代传统化石燃料的新型创新技术,近年来受到广泛关注。这种生物燃料是由少量生物燃料和大量传统柴油混合而成。本文探讨了通过在混合生物燃料中加入添加剂来提高压燃(CI)发动机性能的潜力。研究重点是传统化石燃料与生物衍生成分(如乙醇、生物柴油和其他生物基添加剂)相结合的协同效应。本综述论文旨在探讨四冲程、单缸、直喷式压燃(CI)发动机在不同负荷下使用不同混合燃料(如 CNWEDB、BFNP150、PPNP150 和 ME 柴油/棉子油)的性能。综述概述了生物燃料技术的最新进展,包括新型生产方法和原料选择,旨在克服传统生物燃料的相关限制。文章旨在研究植物油在配制 MHBF 中的潜力,分析其在 CI 发动机中的性能和排放。对发动机性能参数,即制动热效率、制动比耗油量进行了审查,发现这些数值与生物柴油与纯汽油柴油的混合物相当。在 60%、80% 和满负荷条件下,微乳柴油/棉子油的 BTE 在增加,而在 40%、80% 和满负荷条件下,BSFC 在减少。不过,不同研究人员报告的排放物在氮氧化物、一氧化碳和 UHC 方面具有积极的属性。在满负荷时,CO 值在下降,而在所有负荷条件下,UHC 值都在下降。本文最后讨论了未来的研究方向,强调需要不断创新以解决新出现的问题,并优化 CI 发动机的性能,以实现可持续发展和高能效的未来。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
To Enhance the Performance of CI Engine with Using of Additives Based Hybrid Bio Fuel—A Review

The growing demand of sustainable and environment friendly energy sources has spurred research and development efforts towards the integration of biofuels in various applications, particularly in internal combustion engines. Microemulsion technique is a new and innovative alternative to traditional fossil fuel that has gained a significant attention in recent years. This type of bio fuel is made by blending of small amount of biofuel and large amount of conventional diesel fuel. This review paper explores the potential of enhancing the performance of Compression ignition (CI) engines by incorporating additives into hybrid biofuels. The study focuses on the synergistic effects of combining traditional fossil fuels with bio-derived components, such as ethanol, biodiesel, and other bio-based additives. This review paper aim is to explore the performance of a 4-stroke, single-cylinder, direct injection Compression Ignition (CI) engine at different loads using different fuels blends like CNWEDB, BFNP150, PPNP150, and ME Diesel/Colza oil. The review outlines recent advancements in biofuel technology, including novel production methods and feedstock options, aiming to overcome limitations associated with conventional biofuels. The article aims to investigate the potential of vegetable oil in formulating MHBF, analyzing its performance and emissions in CI engines. The engine performance parameters viz., brake thermal efficiency brake specific fuel consumption have been reviewed and found that these values are comparable to the biodiesel blends with pure petrodiesel. At 60%, 80%, and full load condition the BTE of microemulsion diesel/colza oil is increasing while at 40%, 80%, and full load the BSFC is decreasing. Emissions reported by the various researchers, however, have a positive attribute with respect to NOx, CO, and UHC. At full load CO is decreasing and at all load conditions the value of UHC is decreasing. The paper concludes with a discussion on future research directions, emphasizing the need for continued innovation to address emerging issues and optimize the performance of CI engines for a sustainable and energy-efficient future.

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来源期刊
Macromolecular Symposia
Macromolecular Symposia Materials Science-Polymers and Plastics
CiteScore
1.50
自引率
0.00%
发文量
226
期刊介绍: Macromolecular Symposia presents state-of-the-art research articles in the field of macromolecular chemistry and physics. All submitted contributions are peer-reviewed to ensure a high quality of published manuscripts. Accepted articles will be typeset and published as a hardcover edition together with online publication at Wiley InterScience, thereby guaranteeing an immediate international dissemination.
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