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Upgrading of anisole using in situ generated hydrogen in pin to plate pulsed corona discharge

机译:在针到板的脉冲电晕放电中使用原位产生的氢对苯甲醚进行升级

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In this paper, the upgrading of anisole as a model compound for lignin derived bio-oils has been studied experimentally via a pin to plate pulsed corona discharge for the first time. The required hydrogen is generated in situ by plasma decomposition of methyl radicals which exist in bio oil chemical structure. In order to maximize the conversion and improving the selectivity of products, some operating parameters including pulsed repetition frequency, pin number, gap distance, plate electrode diameter and carrier gas flow rate have been evaluated. According to the results, the main products were BTX and phenol. Demethylation, transalkylation, hydrogenolysis, demethoxylation and methyl decomposition are the main chemical reactions. Results reveal that the selectivity of the desired products was enhanced through increasing the decomposition of generated methyl radicals which can be obtained by increasing the energy and number of collisions in the discharge zone. The maximum anisole conversion of 68%, phenol selectivity of 45.6% and BTX selectivity of 21.6% were obtained. Due to the low temperature and atmospheric pressure conditions no hydrogenation of the aromatic ring was observed. The results indicated that the corona discharge plasma reactor can overcome the hydrogen challenges of the hydrodeoxygenation reaction.
机译:本文首次通过针-板脉冲电晕放电实验研究了苯甲醚作为木质素衍生生物油的模型化合物的升级。所需的氢是通过生物油化学结构中存在的甲基自由基的等离子体分解原位产生的。为了最大程度地提高转化率并提高产品的选择性,已经评估了一些操作参数,包括脉冲重复频率,针数,间隙距离,板电极直径和载气流速。根据结果​​,主要产品为BTX和苯酚。脱甲基,烷基转移,氢解,脱甲氧基和甲基分解是主要的化学反应。结果表明,通过增加生成的甲基自由基的分解,可以提高所需产物的选择性,这可以通过增加放电区的能量和碰撞次数来获得。获得的最大茴香醚转化率为68%,苯酚选择性为45.6%,BTX选择性为21.6%。由于低温和大气压条件,未观察到芳环的氢化。结果表明,电晕放电等离子体反应器可以克服加氢脱氧反应的氢挑战。

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