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Additives on hydrogen donor catalytic upgrading for viscosity reduction of heavy oil under the conditions of steam injection

机译:蒸汽注射条件下氢气供体催化升级升降液的粘度降低

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Under the simulated thermal recovery condition, fundamental experiments were carried out in the high temperature high pressure reactor to study the aquathermolysis reaction of heavy oil using formic acid as hydrogen donor and oil-soluble organic home-made nickel salt as catalytic. Urea was selected optimally from the alternative chemical addictivess of ammonium carbonate, urea and ammonium hydrocarbonate and its dosage was 20wt%. The affect of the adding addictives in water for viscosity, group composition and element content of heavy oil during the hydrogen donor catalytic pyrolysis reaction, was researched. It was revealed that there mechanism in the heavy oil viscosity reduction reaction process. The addition of addictives had not only some degree of viscosity reduction function, but also synergistic interaction to the catalyzed reaction with hydrogen donor. Compared to the oil sample from reaction without addictives, there was no obvious change on group compositions, the contents of atom C, H, S, N and O nearly kept unchanged. The introduction of addictives basically did not change structure of heavy oil.
机译:在模拟的热回收条件下,基本实验在高温高压反应器中进行,研究重油用甲酸作为氢气供体和油溶性有机自制镍盐作为催化剂的水冰反应。从碳酸铵,尿素和碳酸氢铵的替代化学患者中最佳地选择尿素,其剂量为20wt%。研究了在氢气供体催化热解反应中加入升压剂在水中加入升值,重质油的元素含量的影响。揭示了重型油粘度降低反应过程的机制。上瘾者的添加不仅具有一定程度的粘度还原功能,而且还与氢气供体的催化反应协同相互作用。与来自反应的油样而没有上瘾的反应相比,组组合物没有明显的变化,原子C,H,S,N和O几乎保持不变。上瘾者的引入基本上没有改变重油结构。

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