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Effects of ethylene on carbon formation in diesel autothermal reforming

机译:乙烯对柴油自热重整过程中碳形成的影响

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In contrast to reforming of light hydrocarbons, diesel reforming has a few fundamental problems, such as coke formation in the reactor, which results in catastrophic failure of the reformer. Olefmic and aromatic hydrocarbons in diesel are known to be precursors of coke formation. Ethylene (C_2H_4) is reported to cause rapid coke formation in the reforming process. In our research, we have also found that C_2H_4 is clearly associated with carbon deposition. In addition, we revealed how C_2H_4 is produced and then converted to carbon. During this decomposition process of longer-chain paraffinic hydrocarbons, if a homogeneous mixture of fuel and oxidants (O_2 and/or H_2O) was not attained, a large quantity of C_2H_4 was produced by pyrolysis of heavier hydrocarbons at local fuel-rich areas. Thereafter C_2H_4 is transformed into carbon, in the absence of oxygen and water, through a pyrolytic process. Therefore, long-term reforming performance can be achieved by controlling the amount of C_2H_4.
机译:与轻烃的重整相比,柴油重整具有一些基本问题,例如反应器中形成焦炭,这会导致重整器发生灾难性故障。已知柴油中的烯烃是芳烃形成的前体。据报道,乙烯(C_2H_4)在重整过程中会导致迅速形成焦炭。在我们的研究中,我们还发现C_2H_4显然与碳沉积有关。此外,我们揭示了如何产生C_2H_4,然后将其转化为碳。在长链链烷烃的这种分解过程中,如果未获得燃料和氧化剂(O_2和/或H_2O)的均匀混合物,则通过在局部燃料丰富的区域对较重的烃进行热解会生成大量的C_2H_4。此后,在不存在氧气和水的情况下,通过热解过程将C_2H_4转化为碳。因此,通过控制C_2H_4的量可以实现长期的重整性能。

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