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首页> 外文期刊>Environmental Science and Pollution Research >Characterization of pyrolysis bio-oil derived from intermediate pyrolysis of Aegle marmelos de-oiled cake: study on performance and emission characteristics of C.I. engine fueled with Aegle marmelos pyrolysis oil-blends
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Characterization of pyrolysis bio-oil derived from intermediate pyrolysis of Aegle marmelos de-oiled cake: study on performance and emission characteristics of C.I. engine fueled with Aegle marmelos pyrolysis oil-blends

机译:热解生物油的表征来自<重点型=“斜体”> Aegle Marmelos 脱油饼的中间热解[/重点>脱油饼:C.I的性能和排放特性研究。 发动机与<重点型=“斜体”> Aegle Marmelos 热解油混合物

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The present research focuses on the analyzing the characteristics of bio-oil derived from intermediate pyrolysis of Aegle marmelos (AM) seed cake and its suitability for C.I. engine adaptation. Owing to the high volatile matter content of 73.69%, Aegle marmelos biomass was selected as the feedstock for this research. The intermediate pyrolysis was carried out at 600?°C in a 2-kg fixed bed type pyrolysis reactor at a heating rate of 10?°C/min and the obtained bio-oil was characterized by different analytical methods. As per American Society for Testing and Materials (ASTM) standards, physicochemical properties of the bio-oil were tested and it was observed that bio-oil is a highly viscous fluid with low calorific value. Analysis of bio-oil through FT-IR and GC-MS examination confirmed the presence of phenol, esters, alkyl, and oxygenated compounds. The performance and emission testing of direct injection diesel engine were conducted with various bio-oil blends and the results were compared with baseline diesel fuel. The experimental results showed that the addition of bio-oil decreased BTE (%) while increasing the BSEC (MJ/kW-h). At the same time, increasing the bio-oil ratio with diesel decreases dangerous emissions such as carbon monoxide and oxides of nitrogen emissions in the engine exhaust. According to engine test result, it was suggested that up to 20% of AM bio-oil (F20) can be employed as engine fuel for better engine operating characteristics.
机译:本研究侧重于分析来自芦苇的中间热解的生物油的特性及其对C.I的适用性。发动机适应。由于73.69%的高挥发性物质含量,选择了Aegle Marmelos生物量作为本研究的原料。在2kg固定床型热解反应器中以10℃/ min的加热速率在600℃下进行中间热解,并通过不同的分析方法表征获得的生物油。根据美国的测试和材料(ASTM)标准,测试生物油的物理化学性质,观察到生物油是具有低热值的高粘度流体。通过FT-IR和GC-MS检查对生物油和GC-MS检查的分析证实存在苯酚,酯,烷基和含氧化合物。直喷式柴油发动机的性能和排放测试用各种生物油混合物进行,并将结果与​​基线柴油燃料进行比较。实验结果表明,在增加BSEC(MJ / KW-H)的同时,添加生物油减少(%)。同时,增加与柴油的生物油比降低危险排放,例如发动机排气中的一氧化碳和氮排放的氧化物。根据发动机测试结果,建议高达20%的AM生物油(F20)可以用作发动机燃料,以便更好地发动机操作特性。

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