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低粘性生物燃料的挑战与机遇——前瞻性综述

Challenges and Opportunities of Low Viscous Biofuel-A Prospective Review.

作者信息

Ramalingam Krishnamoorthy, Vellaiyan Suresh, Venkatesan Elumalai Perumal, Khan Sher Afghan, Mahmoud Zakariya, Saleel Chanduveetil Ahamed

机构信息

Department of Mechanical Engineering, CK College of Engineering and Technology, Cuddalore, Tamil Nadu 607003, India.

Department of Sustainable Engineering, Saveetha School of Engineering (SIMATS), Chennai, Tamil Nadu 600124, India.

出版信息

ACS Omega. 2023 May 5;8(19):16545-16560. doi: 10.1021/acsomega.3c00387. eCollection 2023 May 16.

Abstract

Under the roof of solid industrialization and accelerated intensification of multiple ranges of mobilization, a huge rise in precious fuel consumption and pollution was observed. Based on the recent hardships of fossil fuels, experts are undoubtedly eager in carrying out their research in renewable environment-friendly fuels. There have been many reviews of works considering the parameters and standards of biodiesel, which is only from various vegetable and seed oils. But very little review work was carried out on only plant-based biofuel. Plant-based fuel has a lower viscosity and higher volatility properties. The target of this review was to make a bridge to overcome these research gaps. This review extensively studies the biological background, production outcome, properties, and reliability of plant-based biofuel and also deeply investigates the feasibility of usage in a diesel engine. From deep investigation it was identified that most of the low viscous fuel had higher brake thermal efficiency (BTE) (2% to 4%) and NOx emission (5% to 10%) than high viscous biodiesel. The formation of hydrocarbon (HC), CO, and smoke emission was similar to high viscous biodiesel. Overall, the low viscous fuel effectively improves the engine behaviors.

摘要

在坚实的工业化以及多领域动员加速强化的背景下,珍贵燃料的消耗和污染大幅增加。鉴于近期化石燃料面临的困境,专家们无疑热衷于开展可再生环保燃料的研究。已有许多关于考虑生物柴油参数和标准的研究综述,而这些生物柴油仅来自各种植物油和种子油。但针对仅基于植物的生物燃料的综述工作却很少。基于植物的燃料具有较低的粘度和较高的挥发性。本综述的目标是搭建一座桥梁,以填补这些研究空白。本综述广泛研究了基于植物的生物燃料的生物学背景、生产成果、特性和可靠性,并深入调查了其在柴油发动机中使用的可行性。通过深入研究发现,大多数低粘度燃料比高粘度生物柴油具有更高的制动热效率(BTE)(2%至4%)和氮氧化物排放(5%至10%)。碳氢化合物(HC)、一氧化碳(CO)和烟雾排放的形成与高粘度生物柴油相似。总体而言,低粘度燃料有效改善了发动机性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2324/10193552/05e2dea4fd69/ao3c00387_0001.jpg

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