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Studies on the effects of storage stability of bio-oil obtained from pyrolysis of Calophyllum inophyllum deoiled seed cake on the performance and emission characteristics of a direct-injection diesel engine

机译:钙肾上腺素糊化种子饼热解稳定性对生物解的储存稳定性对直喷柴油机的性能和排放特性

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摘要

The highly unbalanced nature of bio-oil composition poses a serious threat in terms of storage and utilization of bio-oil as a viable fuel in engines. So it becomes inevitable to study the variations in physicochemical properties of the bio-oil during storage to value its chemical instability, for designing stabilization methodologies. The present study aims to investigate the effects of storage stability of bio-oil extracted from pyrolyzing Calophyllum inophyllum (CI) deoiled seed cake on the engine operating characteristics. The bio-oil is produced in a fixed bed reactor at 500 A degrees C under the constant heating rate of 30 A degrees C/min. All the stability analysis methods involve an accelerated aging procedure based on standards established by ASTM (D5304 and E2009) and European standard (EN 14112). Gas chromatography-mass spectrometry was employed to analytically characterize the unaged and aged bio-oil samples. The results clearly depict that stabilizing Calophyllum inophyllum bio-oil with 10% (w/w) methanol improved its stability than that of the unstabilized sample thereby reducing the aging rate of bio-oil to 0.04 and 0.13 cst/h for thermal and oxidative aging respectively. Engine testing of the bio-oil sample revealed that aged bio-oil samples deteriorated engine performance and increased emission levels at the exhaust. The oxidatively aged sample showed the lowest BTE (24.41%), the highest BSEC (20.14 MJ/kWh), CO (1.51%), HC (132 ppm), NOx (1098 ppm) and smoke opacity (34.8%).
机译:生物油组合物的高度不平衡性质在生物油的储存和利用中构成了严重威胁,作为发动机的可行燃料。因此,研究储存过程中生物油的物理化学性质的变化变得不可避免,以重视其化学不稳定,以设计稳定方法。本研究旨在探讨生物油中储存稳定性从热解性肺泡(CI)糊化的种子饼上提取的生物油的储存稳定性对发动机操作特性的影响。生物油在固定床反应器中以500℃的固定床反应器生产,在30℃/ min的恒定加热速率下。所有稳定性分析方法包括基于由ASTM(D5304和E2009)制定的标准加速老化过程和欧洲标准(EN 14112)。气相色谱 - 质谱法用于分析化学和老化的生物油样品。结果清楚地描绘了稳定红厚壳生物油,用10%(重量/重量)甲醇改善比不稳定样品从而减少生物油的老化速率至0.04和0.13厘沲/ h的热和氧化老化的其稳定性分别。生物油样品的发动机测试显示,老化的生物油样品劣化发动机性能和排气时的发射水平增加。氧化的老化样品显示最低BTE(24.41%),最高BSEC(20.14mJ / kWh),CO(1.51%),HC(132ppm),NOx(1098ppm)和烟雾不透明(34.8%)。

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