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High temperature reactions of water with heavy oil and bitumen: insights into aquathermolysis chemistry during steam-assisted recovery

机译:水与重油和沥青的高温反应:在蒸汽辅助回收过程中对水热裂解化学的深入了解

摘要

To better understand the hot water-mediated organic transformation process (aquathermolysis) that occurs during the steam-assisted recovery of heavy oils and bitumen we have performed a series of experiments that subject a heavy oil to progressively higher temperatures and pressures in the presence of liquid water. As temperature and pressure increases, from ambient conditions to 300 °C and 1250 psig (8.6 MPa), a floating oil (flotate) is generated and is composed of mostly aliphatic hydrocarbons that appear to be generated at the expense of polars and asphaltenes. Analyses of hopane maturity parameters for the flotate indicate lower temperatures than the starting material suggesting the liberation of hopanes and, therefore, other hydrocarbons, from asphaltenes. Infrared spectra confirm changes in overall organic constitution as the relative abundance of hydrocarbons to oxygen-containing functional groups increases in the flotate. At the highest temperatures and pressures (325 °C, 1750 psig (13.8 MPa)) the flotate is at a maximum relative amount, the untransformed heavy oil is at a minimum and significant amounts of methane are generated indicating the onset of cracking. Steam-assisted recovery of heavy oil, therefore, leads to changes in the chemical constitution of a number of chemical fractions generating a lighter oil and gases that must be taken into account when planning field operations for production.
机译:为了更好地理解在重油和沥青的蒸汽辅助回收过程中发生的热水介导的有机转化过程(水热分解),我们进行了一系列实验,使重油在液体存在下逐渐经受更高的温度和压力水。随着温度和压力的升高,从环境温度到300°C和1250 psig(8.6 MPa),会生成一种浮油(浮油),它主要由似乎以极性和沥青质为代价的脂肪族烃组成。浮选hop烷成熟度参数的分析表明,温度比起始原料低,表明hop烷和其他烃类从沥青质中释放出来。红外光谱证实,随着浮选液中烃类相对于含氧官能团的相对丰度的增加,总体有机组成也发生了变化。在最高的温度和压力(325°C,1750 psig(13.8 MPa))下,浮选液的最大相对量,未转化的重油的最小量,并且产生了大量的甲烷,表明发生了裂化。因此,蒸汽辅助回收重油会导致许多化学馏分的化学组成发生变化,从而产生较轻的石油和天然气,在计划生产现场作业时必须予以考虑。

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