Extraction and characterization of Cucumis melon seeds (Muskmelon seed oil) biodiesel and studying its blends impact on performance, combustion, and emission characteristics in an internal combustion engine

IF 7.1 Q1 ENERGY & FUELS
Ala’a K. Al-Bawwat , Mohamed R. Gomaa , Antonio Cano , Francisco Jurado , Eid M. Alsbou
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引用次数: 0

Abstract

This study examines the performance, combustion, and emissions characteristics of a single-cylinder internal combustion diesel engine when fueled with a blend of diesel and biodiesel derived from muskmelon seeds. The kinematic viscosity of the extracted muskmelon seed oil was 6.1 cSt at 40 °C, which is higher than the kinematic viscosity of petroleum diesel of 2.6 cSt. Muskmelon biodiesel was further analyzed using thin-layer chromatography (TLC) and high-voltage separator tests. A comparison of the fuel properties of muskmelon biodiesel with conventional diesel fuel revealed that muskmelon biodiesel could be used alone or in a diesel–biodiesel blend to fuel compression diesel engines. In this study, muskmelon seed biodiesel was blended with diesel fuel at proportions of 10 %, 20 %, and 50 % (BD10, BD20, and BD50, respectively). At a relatively low rotational speed of 1200 rpm, the brake thermal efficiency (BTE) of the engine operated with BD10 and BD20 blends were 36.1 % and 36.0 %, respectively, while the brake-specific fuel consumption (BSFC) of the two blends were 0.260 kg/kWh, and 0.262 kg/kWh, respectively. These values closely resemble those typically observed in diesel fuel engines. Indeed, the average BTE of the BD20 blend was only 3.24 % less than the average BTE of diesel fuel. Diesel fuel generates less NOx and SO2 emissions compared to biodiesel blends: BD100 emitted the most NOx pollution of all fuels tested. In addition, BD10 released significantly more SO2 emissions compared to the other fuels tested. However, the BD20 blend outperformed all other blends in terms of CO, NOx, and SO2 emissions at high engine speeds. The only exception was H2S emissions, which were higher than BD50 and BD100. BD20 also exhibited significantly reduced CO emissions compared to diesel fuel, while BD10 emitted significantly more CO emissions than the other biodiesel blends. Our findings revealed that BD20 exhibited the best engine performance and lower emissions among all fuels tested. In other words, BD20 is the ideal fuel blend for use in diesel engines and does not require any alterations to the engine. Muskmelon waste seeds represent a non-edible waste stream that can be exploited in the production of biodiesel fuel, allowing for the upcycling of a potentially problematic thermochemical conversion feedstock. This potentially valuable use for waste muskmelon seeds in the energy sector could address the wastefulness associated with this particular waste stream.

瓜子(麝香瓜子油)生物柴油的提取和表征,以及研究其混合物对内燃机性能、燃烧和排放特性的影响
本研究考察了单缸内燃柴油发动机在混合柴油和从麝香瓜籽中提取的生物柴油后的性能、燃烧和排放特性。提取的麝香瓜籽油在 40 °C 时的运动粘度为 6.1 厘斯,高于石油柴油 2.6 厘斯的运动粘度。使用薄层色谱法(TLC)和高压分离器测试对麝香瓜生物柴油进行了进一步分析。通过比较麝香瓜生物柴油与传统柴油的燃料特性,发现麝香瓜生物柴油可单独使用,也可用于柴油-生物柴油混合燃料,为压缩式柴油发动机提供燃料。在这项研究中,麝香瓜籽生物柴油与柴油的混合比例分别为 10%、20% 和 50%(BD10、BD20 和 BD50)。在相对较低的转速(1200 转/分)下,使用 BD10 和 BD20 混合物的发动机的制动热效率(BTE)分别为 36.1% 和 36.0%,而两种混合物的制动油耗(BSFC)分别为 0.260 千克/千瓦时和 0.262 千克/千瓦时。这些数值非常接近柴油发动机的典型值。事实上,BD20 混合物的平均 BTE 仅比柴油的平均 BTE 低 3.24%。与生物柴油混合物相比,柴油产生的氮氧化物和二氧化硫排放量较少:在所有测试燃料中,BD100 的氮氧化物污染排放量最大。此外,与其他测试燃料相比,BD10 的二氧化硫排放量要高得多。然而,在发动机高速运转时,BD20 混合燃料在 CO、NOx 和 SO2 排放方面的表现优于所有其他混合燃料。唯一的例外是 H2S 排放量,它高于 BD50 和 BD100。与柴油相比,BD20 的一氧化碳排放量也明显减少,而 BD10 的一氧化碳排放量则明显高于其他生物柴油混合物。我们的研究结果表明,在所有测试燃料中,BD20 的发动机性能最好,排放也较低。换句话说,BD20 是用于柴油发动机的理想混合燃料,而且不需要对发动机进行任何改动。麝香瓜废弃种子是一种非食用废弃物流,可用于生产生物柴油燃料,从而实现对可能存在问题的热化学转换原料的升级再循环。废弃麝香瓜籽在能源领域的这一潜在宝贵用途可以解决与这一特殊废物流相关的浪费问题。
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来源期刊
CiteScore
8.80
自引率
3.20%
发文量
180
审稿时长
58 days
期刊介绍: Energy Conversion and Management: X is the open access extension of the reputable journal Energy Conversion and Management, serving as a platform for interdisciplinary research on a wide array of critical energy subjects. The journal is dedicated to publishing original contributions and in-depth technical review articles that present groundbreaking research on topics spanning energy generation, utilization, conversion, storage, transmission, conservation, management, and sustainability. The scope of Energy Conversion and Management: X encompasses various forms of energy, including mechanical, thermal, nuclear, chemical, electromagnetic, magnetic, and electric energy. It addresses all known energy resources, highlighting both conventional sources like fossil fuels and nuclear power, as well as renewable resources such as solar, biomass, hydro, wind, geothermal, and ocean energy.
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