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首页> 外文期刊>Energy Technology: Generation,Conversion,Storage,Distribution >Synergistic Hydrogen-Donating Ability of Petroleum Distillates and Hydrogen During Noncatalytic Thermal Processing
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Synergistic Hydrogen-Donating Ability of Petroleum Distillates and Hydrogen During Noncatalytic Thermal Processing

机译:非催化热处理过程中石油馏出物与氢的协同加氢能力

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Anthracene (ANT) was used as a chemical probe to determine the hydrogen donating ability (HDA) of H2, Venezuela distillates, and the mixture of the two (H2 + distillates) at a range of temperatures, and the synergistic HDA between H2 and distillates was measured to analyze the reaction path and activation possibilities of hydrogen. Results show that all of the HDAs determined increase as the temperature increases. The HDA of H2 is much higher than that of the distillates at the same conditions. Moreover, the HDA of the H2 +distillates mixture is higher than the summation of the corresponding HDAs of the hydrogen and distillates separately. The additional activity may be caused by synergistic effects between the H2 and oil. The synergy promotes the activation of hydrogen molecules presented as some particular characteristics of the oils, such as the impact of active radicals from the oils, the utilization of a "hydrogen shuttle" from the oil fractions, and possibly activation capacity of hydrogen sulfide.
机译:蒽(ANT)用作化学探针,以确定在一定温度范围内的H2,委内瑞拉馏出物以及两者(H2 +馏出物)的混合物以及H2和馏出物之间的协同HDA的氢供氢能力(HDA)进行测量以分析氢的反应路径和活化可能性。结果表明,所有确定的HDA随温度升高而增加。在相同条件下,H2的HDA远高于馏出液的HDA。而且,H 2 +馏出物混合物的HDA高于氢和馏出物的相应HDA的总和。额外的活性可能是由H2和油之间的协同作用引起的。协同作用促进了作为油的某些特定特征呈现的氢分子的活化,例如来自油的活性自由基的影响,来自油馏分的“氢穿梭”的利用以及可能的硫化氢的活化能力。

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