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Simultaneous solvent extraction and transesterification of jatropha oil for biodiesel production, and potential application of the obtained cakes for binderless particleboard

机译:麻疯树油的溶剂同时萃取和酯交换用于生物柴油生产,以及获得的蛋糕在无粘结剂刨花板上的潜在应用

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摘要

This study investigated biodiesel production from jatropha seeds in a single step, i.e. by simultaneous solvent extraction and transesterification of jatropha oil, and possibility to transform the obtained cakes into binderless particleboards. n-Hexane was used as extracting solvent. The best operating conditions were identified to obtain optimal biodiesel yield and quality, and optimal physical and mechanical properties for binderless particleboards. Biodiesel yield was usually influenced by operating conditions, and the influences of both n-hexane to seed and methanol to oil ratios were most significant. An increase in n-hexane to seed ratio (from 1:1 to 3:1) combined with the decrease in methanol to oil ratio (from 13.3:1 to 8.0:1) led to an improvement in biodiesel yield. The best biodiesel yield (92% with a fatty acid methyl ester purity >98%) was obtained from 2:1 n-hexane to seed ratio, 10.6:1 methanol to oil ratio, 200–600 rpm stirring speed, 50 °C temperature and 6 h reaction time. Operating conditions had no significant effect on the biodiesel quality, except the n-hexane to seed ratio. Moreover, cohesive particleboards were produced from the obtained cakes, proteins and fibers acting respectively as binder and reinforcing fillers. An increase in the cake moisture content significantly improved the particleboard properties. The most promising binderless particleboard was manufactured from cake B under 20% cake moisture content and 160 °C pressing temperature. Its properties were 0.87 g/cm3 density, 8.4% moisture content, 7.2 MPa modulus of rupture, 10.4 GPa modulus of elasticity, 0.14 MPa internal bonding strength, 52% water absorption and 20% thickness swelling after 24 h immersion in water.
机译:这项研究调查了从麻风树籽中一步生产生物柴油的方法,即通过同时进行溶剂萃取和麻风树油的酯交换反应,以及将获得的饼转化为无粘结剂刨花板的可能性。正己烷用作萃取溶剂。确定最佳操作条件以获得最佳的生物柴油产量和质量,以及无粘结剂刨花板的最佳物理和机械性能。生物柴油的收率通常受操作条件的影响,正己烷与种子的比例以及甲醇与油的比例的影响最为显着。正己烷与种子的比率增加(从1:1到3:1),而甲醇与油脂的比率减少(从13.3:1到8.0:1)导致生物柴油收率提高。从2:1正己烷与种子的比例,10.6:1甲醇与油的比例,200–600 rpm的搅拌速度,50°C温度获得最佳的生物柴油收率(脂肪酸甲酯纯度> 98%时为92%)和6小时反应时间。除了正己烷与种子的比例外,操作条件对生物柴油的质量没有显着影响。此外,由所获得的饼,蛋白质和纤维分别用作粘合剂和增强填料来生产粘性刨花板。滤饼含水量的增加显着改善了刨花板的性能。最有前途的无粘结剂刨花板是由蛋糕B在20%的蛋糕含水量和160°C的压榨温度下制造的。它的性能为0.87 g / cm3的密度,8.4%的水分含量,7.2 MPa的断裂模量,10.4 GPa的弹性模量,0.14 MPa的内部粘合强度,52%的吸水率和在水中浸泡24小时后溶胀的厚度为20%。

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