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The reformation of liquid hydrocarbons in an aqueous discharge reactor

机译:含水排放反应器中液态烃的重整

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We present an aqueous discharge reactor for the reformation of liquid hydrocarbons. To increase a dielectric constant of a liquid medium, we added distilled water to iso-octane and n-dodecane. As expected, we found decreased discharge onset voltage and increased discharge power with increased water content. Results using optical emission spectroscopy identified OH radicals and O atoms as the predominant oxidative reactive species with the addition of water. Enriched CH radicals were also visualized, evidencing the existence of cascade carbon-carbon cleavage and dehydrogenation processes in the aqueous discharge. The gaseous product consisted primarily of hydrogen, carbon monoxide, and unsaturated hydrocarbons. The composition of the product was readily adjustable by varying the volume of water added, which demonstrated a significant difference in composition with respect to the tested liquid hydrocarbon. In this study, we found no presence of CO2 emissions or the contamination of the reactor by solid carbon deposition. These findings offer a new approach to the reforming processes of liquid hydrocarbons and provide a novel concept for the design of a practical and compact plasma reformer.
机译:我们提出了一种用于液体烃重整的含水排放反应器。为了增加液体介质的介电常数,我们向异辛烷和正十二烷中添加了蒸馏水。如预期的那样,我们发现随着水含量的增加,放电起始电压降低,放电功率提高。使用光发射光谱法的结果确定了OH自由基和O原子是添加水后的主要氧化反应性物质。还可以观察到富集的CH自由基,这证明了水性排放物中存在级联碳-碳裂解和脱氢过程。气态产物主要由氢,一氧化碳和不饱和烃组成。通过改变加入的水的体积可以容易地调节产物的组成,这证明了相对于测试的液态烃而言组成上的显着差异。在这项研究中,我们发现没有二氧化碳排放或固体碳沉积对反应器的污染。这些发现为液态烃的重整过程提供了一种新方法,并为设计实用而紧凑的等离子体重整器提供了新颖的概念。

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