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Preparation and Characterization of Musa balbisiana Colla Underground Stem Nano-material for Biodiesel Production Under Elevated Conditions

机译:高温条件下用于生物柴油生产的Mus balbisiana Colla地下茎纳米材料的制备与表征

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A high free fatty acid (FFA) containing Jatropha curcas L. oil (JCO) was used for biodiesel production using Musa balbisiana Colla underground stem (MBCUS) ash catalyst, in a high pressure-high temperature (HT) reactor. The composition of the MBCUS catalyst was ascertained using XRF analysis and found that the ash obtained at 550 °C contain about 36 % silica (SiO2), 25 % potassium oxide (K2O), 10 % each of lime (CaO) and magnesia (MgO) and 4 % each of phosphorous pentoxide (P2O5) and alumina (A12O3) as the major component for catalytic activation. The catalyst was characterized by SEM-EDX image analysis and found that the composition of the catalyst is versatile and consist of several alkali and alkaline earth metal chlorides, oxides, carbonate and silica. The BET surface area was found to be about 39 m /g. The catalyst was further calcined in a TGA and observed that a maximum of 10 % losses were possible at 991 °C. The catalyst structure was further characterized from TEM images and found that the structural dimensions are identical (less than 100 nm length) and brick like (70 nm x 20 nm x 15 nm). The catalyst was found very effective during transesterification under HT (275 °C) and internal pressure (4.2 MPa) and 98.0 % fatty acid methyl ester (FAME) could be obtained from JCO with an initial acid value (AV) 18.4 mg KOH/g. There was a drastic reduction of FFA (AV 3.4 mg KOH/g) in the FAME obtained. The reduction of FFA may be attributed to the HT and high internal vapour pressure of the reaction mixture that resulted conversion of FFA to FAME and water. The fuel properties of the FAME were analysed as per ASTM and EN-standards.
机译:含有麻风树麻疯树油(JCO)的高游离脂肪酸(FFA)在高压高温(HT)反应器中使用穆萨巴尔比西亚纳Colla地下茎(MBCUS)灰催化剂用于生物柴油生产。使用XRF分析确定MBCUS催化剂的组成,发现在550°C下获得的灰分包含约36%的二氧化硅(SiO2),25%的氧化钾(K2O),分别为10%的石灰(CaO)和氧化镁(MgO )和五成的五氧化二磷(P2O5)和氧化铝(Al2O3)作为催化活化的主要成分。通过SEM-EDX图像分析对该催化剂进行了表征,发现该催化剂的组成是通用的,并且由几种碱金属和碱土金属的氯化物,氧化物,碳酸盐和二氧化硅组成。发现BET表面积为约39m 2 / g。将催化剂在TGA中进一步煅烧,观察到在991°C时最大损失为10%。从TEM图像进一步表征催化剂结构,发现结构尺寸相同(小于100nm长度)和砖状(70nm×20nm×15nm)。发现该催化剂在HT(275°C)和内压(4.2 MPa)的酯交换反应过程中非常有效,并且可以从JCO获得98.0%的脂肪酸​​甲酯(FAME),其初始酸值(AV)为18.4 mg KOH / g 。获得的FAME中的FFA大大降低(AV 3.4 mg KOH / g)。 FFA的减少可能归因于HT和反应混合物的高内部蒸气压,导致FFA转化为FAME和水。根据ASTM和EN标准对FAME的燃料特性进行了分析。

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