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Enhancement of Biodiesel Production from Marine Alga Scenedesmus sp. through In Situ Transesterification Process Associated with Acidic Catalyst

机译:海洋藻类(Scenedesmus sp。)的生物柴油生产增强。酸性催化剂的原位酯交换反应

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摘要

The aim of this study was to increase the yield of biodiesel produced by Scenedesmus sp. through in situ transesterification by optimizing various process parameters. Based on the orthogonal matrix analysis for the acidic catalyst, the effects of the factors decreased in the order of reaction temperature (47.5%) > solvent quantity (26.7%) > reaction time (17.5%) > catalyst amount (8.3%). Based on a Taguchi analysis, the effects of the factors decreased in the order of solvent ratio (34.36%) > catalyst (28.62%) > time (19.72%) > temperature (17.32%). The overall biodiesel production appeared to be better using NaOH as an alkaline catalyst rather than using H2SO4 in an acidic process, at 55.07 ± 2.18% (based on lipid weight) versus 48.41 ± 0.21%. However, in considering the purified biodiesel, it was found that the acidic catalyst was approximately 2.5 times more efficient than the alkaline catalyst under the following optimal conditions: temperature of 70°C (level 2), reaction time of 10 hrs (level 2), catalyst amount of 5% (level 3), and biomass to solvent ratio of 1 : 15 (level 2), respectively. These results clearly demonstrated that the acidic solvent, which combined oil extraction with in situ transesterification, was an effective catalyst for the production of high-quantity, high-quality biodiesel from a Scenedesmus sp.
机译:这项研究的目的是提高Scenedesmus sp。生产的生物柴油的产量。通过优化各种工艺参数进行原位酯交换反应。基于酸性催化剂的正交矩阵分析,各因素的影响依次为反应温度(47.5%)>溶剂量(26.7%)>反应时间(17.5%)>催化剂量(8.3%)。基于Taguchi分析,这些因素的影响以溶剂比率(34.36%)>催化剂(28.62%)>时间(19.72%)>温度(17.32%)的顺序降低。使用NaOH作为碱性催化剂,而不是在酸性过程中使用H2SO4,生物柴油的整体产量似乎更好,分别为55.07±2.18%(基于脂质重量)与48.41±0.21%。但是,在考虑纯化的生物柴油时,发现在以下最佳条件下,酸性催化剂的效率是碱性催化剂的约2.5倍:温度为70°C(2级),反应时间为10小时(2级) ,催化剂量为5%(第3级)和生物质与溶剂之比为1 :: 15(第2级)。这些结果清楚地表明,将油提取与原位酯交换反应相结合的酸性溶剂是从Scenedesmus sp。生产高品质,高质量生物柴油的有效催化剂。

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