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Bio-oil upgrading by means of ethyl ester production in reactive distillation to remove water and to improve storage and fuel characteristics

机译:通过在反应蒸馏中生产乙酯来提纯生物油,以去除水并改善存储和燃料特性

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Several solid acids (SO_4~(2-)/M_xO_y) were prepared and compared in upgrading bio-oil using ethanol and bio-oil as raw materials through reactive rectification. Two kinds of upgraded bio-oil were obtained in the upgrading process. The densities of two kinds of upgraded bio-oil were reduced from 1.16 to 0.91 and 0.95 g cm~(-3), and the gross calorific value increased from 14.3 to 21.5 and 24.5 MJ kg~(-1) and the acidity of upgraded bio-oil was also alleviated from 2.82 to 7.06 and 5.35, respectively. The results of ~1H NMR, gas chromatography-mass spectrometry (GC-MS) and FT-IR analysis showed that the ester reaction in the bio-oil was promoted by solid acid catalysts. The stability of upgraded bio-oil was investigated by storing at room temperature. After 3 months of aging, the upgraded bio-oil did not show much viscosity increase.
机译:制备了几种固体酸(SO_4〜(2-)/ M_xO_y),并比较了以乙醇和生物油为原料通过反应精馏提纯生物油的方法。在提质过程中获得了两种提质的生物油。两种提质生物油的密度从1.16降至0.91和0.95 g cm〜(-3),总热值从14.3增至21.5和24.5 MJ kg〜(-1),提纯后的酸度生物油也分别从2.82减少到7.06和5.35。 〜1H NMR,气相色谱-质谱(GC-MS)和FT-IR分析的结果表明,固体酸催化剂促进了生物油中的酯反应。通过在室温下储存来研究提质的生物油的稳定性。老化3个月后,升级后的生物油没有显示出太大的粘度增加。

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