减压渣油掺炼工业供氢剂缓和热转化的基础研究

减压渣油掺炼工业供氢剂缓和热转化的基础研究

  • 摘要: 以FCC油浆及其窄馏分作为工业供氢剂,首先测定其受热供氢能力,然后在此基础上考察了掺炼工业供氢剂对减压渣油缓和热转化生产燃料油和部分轻质油的改进效果及其化学原因。在实验室热反应装置上对减压渣油(VR)为原料掺炼FCC油浆(DO)及其窄馏分段(DO3)热转化实验结果表明,在400℃、100min反应条件下随着供氢剂掺炼比增大,小于180℃馏分的收率减少,180℃~350℃馏分收率增加,大于180℃燃料油的100℃黏度减小、安定性增加;当掺炼比达15%时,燃料油的安定性合格。减压渣油掺炼相对供氢能力较大的工业供氢剂进行缓和热转化,有利于在提高轻油收率的同时使得燃料油黏度较低、安定性合格;但是燃料油四组分含量的变化与安定性关系不大。进一步研究表明,工业供氢剂对于减压渣油缓和热转化所得燃料油具有较好安定性的化学原因在于,工业供氢剂可同时抑制前沥青质的生成和沥青质分子缔合指数的增加。

     

    Abstract: Chemical fundamentals and effectiveness of typical industrial hydrogen donors such as FCC decant oil and its subfractions during mild thermal cracking of a vacuum residue were revealed. Hydrogen donor abilities of the industrial donors were first analyzed, and the thermal cracking of a vacuum residue (VR) was then studied in an autoclave by blending with a hydrogen donor—a FCC decant oil (DO) or one of its subfractions (DO3). It is shown that while the addition of hydrogen donor increases, the yield of 180℃- fraction decreases and the yields of both 180℃~350℃ fraction and of 350℃- fraction increase. The viscosity of product residual fuel oil at 100℃ is reduced and its stability measured by spot test is improved with the addition of hydrogen donor. When hydrogen donor addition into feedstock is over 15%, the stability of residual fuel oil is qualified for marketing. It was found that it is the relative high hydrogen donor ability of industrial hydrogen donor employed that improves the products in both the stability of residual fuel oil and the yield of light fractions when vacuum residue is mildly thermal cracked in the presence of hydrogen donors. No correlation in this process exists between residual fuel oil′s group composition and stability. Further investigation through solubility / structural analysis revealed the chemical basis for the improved stability of residual fuel oil, i.e. addition of industrial hydrogen donor can effectively inhibit both preasphaltene formation and the deterioration of association index of the asphaltene when vacuum residue is processed by mild thermal cracking.

     

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