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Synthesis of Biokerosene through Electrochemical Hydrogenation of Terpene Hydrocarbons from Turpentine Oil

机译:松节油中萜烯烃的电化学加氢合成生物油

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Indonesia possesses great potential for developing renewable resources as alternative fuels. For example, turpentine oil obtained from Pinus merkusii , which contains mostly monoterpene hydrocarbons (C 10 H 16 ). The oil is highly suitable to be processed for biokerosene or even jet biofuel. It consists of hydrocarbons within the range of C 10 to C 15 . However, it contains insufficient H and thus needs to be upgraded. In the present work, electrochemical hydrogenation was used for upgrading. In the electrochemical cell, stainless steel, silver, and carbon were used alternately for the anode, while copper and silver Raschig rings were used for the cathode. An electrolyte solution of cuprous ammonium formate was utilized not only as a source of H but also to draw the unsaturated hydrocarbons into the aqueous phase. The electrolyte : oil ratio (up to 2:1), electrolyte concentration (between 0.4 and 2 M) and reaction time were varied throughout the experiments. The bromine number (unsaturation level) of the turpentine oil, which was initially 1,86 (mole Br 2 /mole), was lowered significantly to 0.69-0.90. Promising increase of smoke point values were observed from 11 mm to 16-24 mm, indicating a higher H content of the processed oil, thus making it suitable as a substitute for petroleum kerosene.
机译:印度尼西亚在开发可再生资源作为替代燃料方面具有巨大潜力。例如,得自松木的松节油,其主要含有单萜烃(C 10 H 16)。该油非常适合用于加工生物煤油甚至喷气式生物燃料。它由C 10至C 15范围内的烃组成。但是,它包含的H不足,因此需要升级。在目前的工作中,电化学氢化被用于升级。在电化学电池中,不锈钢,银和碳交替用作阳极,而铜和银拉西环用作阴极。甲酸亚铵铵的电解质溶液不仅用作H的来源,而且还将不饱和烃吸入水相。在整个实验过程中,电解液与油的比例(最高为2:1),电解液浓度(在0.4和2 M之间)和反应时间均发生变化。松节油的溴值(不饱和度)最初为1,86(摩尔Br 2 /摩尔),显着降低至0.69-0.90。观察到的烟点值有望从11毫米增加到16-24毫米,这表明加工油中的H含量更高,因此适合用作石油煤油的替代品。

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