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In-situ catalytic upgrading of heavy oil using oil-soluble transition metal-based catalysts

机译:使用油溶性过渡金属基催化剂原位催化升级重油

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In this study, oil-soluble transition metal-based catalysts (Fe, Co, Ni) are proposed for catalyzing aquathermolysis reactions in steam injection process for heavy oil production to achieve in-situ upgrading of heavy oil. Their catalytic performance and possible mechanism were investigated by autoclave experiments together with a comprehensive analysis of the change in physical and chemical properties of the upgraded oil using SARA analysis, viscosity measurement, GC, GC-MS, FTIR, and 13C NMR, etc. Simultaneously, the in-situ transformation of these catalysts was also analyzed by TG-FTIR, XRD, and Mossbauer spectra, etc. to better under the possible catalytic mechanism. The results showed that the in-situ transformation of these oil soluble catalysts occurred during the thermal treatment process at 250 degrees C and 300 degrees C, and their metal-based complexes, oxide, sulfide, and sometime pure metal were in-situ generated and played a catalytic role for aquathermolysis reactions. These catalysts showed a good catalytic performance at 300 degrees C for heavy oil upgrading in reducing viscosity, increasing saturates content (especially low molecule weight alkanes), decreasing resins and asphaltenes content, removing sulfur and nitrogen, and decreasing polyaromatics content, etc. by inhibiting the condensation and recombination reactions and promoting thermal decomposition reactions of heavy components (resin, asphaltene, and polycyclic aromatics, long chain alkanes, etc.) and hydrogenation reaction. Nickle gives the best catalytic performance. The low cost and easy access together with its high catalytic activity make its wide application a great potential in catalyzing aquathermolysis reaction in steam injection process for in-situ upgrading and heavy oil recovery.
机译:在该研究中,提出了用于催化蒸汽喷射过程中的蒸汽溶解反应的油溶性过渡金属基催化剂(Fe,Co,Ni),以实现重油的原位升级。通过高压釜实验研究了它们的催化性能和可能的机理,并综合分析了使用SARA分析,粘度测量,GC,GC-MS,FTIR和13C NMR等升级的油的物理和化学性质变化的综合分析,通过Tg-FTIR,XRD和母蛋白光谱等分析了这些催化剂的原位转化,以在可能的催化机制下更好地分析。结果表明,在250℃和300℃的热处理过程中发生这些油溶催化剂的原位转化,以及它们的金属基配合物,氧化物,硫化物和有时纯金属是原位产生的为Aquathermoly is解反应发挥了催化作用。这些催化剂在300℃下表现出良好的催化性能,用于降低粘度的重油升级,增加饱和含量(尤其是低分子重量烷烃),降低树脂和沥青质含量,除去硫和氮,并通过抑制降低多甲酰含量等。缩合和重组反应和促进重型成分(树脂,沥青质和多环芳烃,长链烷烃等)和氢化反应的热分解反应。尼克尔给药了最佳的催化性能。低成本和轻松进入其高催化剂活性使其广泛应用于蒸汽喷射过程中催化Aquathermoly解反应的巨大潜力,以便原位升级和重油回收。

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