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Heavy fossil hydrocarbon conversion and upgrading using radio-frequency or microwave energy

机译:利用射频或微波能量进行重化石碳氢化合物转化和升级

摘要

Conversion of heavy fossil hydrocarbons (HFH) to a variety of value-added chemicals and/or fuels can be enhanced using microwave (MW) and/or radio-frequency (RF) energy. Variations of reactants, process parameters, and reactor design can significantly influence the relative distribution of chemicals and fuels generated as the product. In one example, a system for flash microwave conversion of HFH includes a source concentrating microwave or RF energy in a reaction zone having a pressure greater than 0.9 atm, a continuous feed having HFH and a process gas passing through the reaction zone, a HFH-to-liquids catalyst contacting the HFH in at least the reaction zone, and dielectric discharges within the reaction zone. The HFH and the catalyst have a residence time in the reaction zone of less than 30 seconds. In some instances, a plasma can form in or near the reaction zone.
机译:可以使用微波(MW)和/或射频(RF)能量来提高将重化石碳氢化合物(HFH)转化为各种增值化学品和/或燃料的能力。反应物,工艺参数和反应器设计的变化会显着影响作为产品生成的化学物质和燃料的相对分布。在一个示例中,一种用于HFH的快速微波转化的系统,包括在压力大于0.9 atm的反应区中集中微波或RF能量的源,具有HFH的连续进料以及通过该反应区的工艺气体,使液体至少在反应区内与HFH接触并在反应区内发生介电放电。 HFH和催化剂在反应区中的停留时间小于30秒。在某些情况下,等离子体可以在反应区中或附近形成。

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