Understanding aqueous foam with novel CO_2-soluble surfactants for controlling CO_2 vertical sweep i

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The ability of a novel nonionic CO_2 -soluble surfactant to propagate foam in porous media was compared with that of a conventional anionic surfactant(aqueous soluble only)through core floods with Berea sandstone cores.Both simultaneous and alternating injections have been tested.The novel foam outperforms the conventional one with respect to faster foam propagation and higher desaturation rate.Furthermore,the novel injection strategy,CO_2 continuous injection with dissolved CO_2 -soluble surfactant,has been tested in the laboratory.Strong foam presented without delay.It is the first time the measured surfactant properties have been used to model foam transport on a field scale to extend our findings with the presence of gravity segregation.Different injection strategies have been tested under both constant rate and pressure constraints.It was showed that novel foam outperforms the conventional one in every scenario with much higher sweep efficiency and injectivity as well as more even pressure redistribution.Also,for this novel foam,it is not necessary that constant pressure injection is better,which has been concluded in previous literature for conventional foam.Furthermore,the novel injection strategy,CO_2 continuous injection with dissolved CO_2 -soluble surfactant,gave the best performance,which could lower the injection and water treatment cost. The ability of a novel nonionic CO_2 -soluble surfactant to propagate foam in porous media was compared with that of a conventional anionic surfactant (aqueous soluble only) through core floods with Berea sandstone cores ..Both simultaneous and alternating injections have been tested. The novel foam outperforms the conventional one with respect to faster foam propagation and higher desaturation rate. Still further, the novel injection strategy, CO_2 continuous injection with dissolved CO_2 -soluble surfactant, has been tested in the laboratory. Strong foam presented without delay. It is the first time the measured surfactant properties have been used to model foam transport on a field scale to extend our findings with the presence of gravity segregation. Different injection strategies have been tested under both constant rate and pressure constraints.It was that novel foam outperforms the conventional one in every scenario with much higher sweep efficiency and injectivity as well as more even pressure redistribution.Also, for this novel foam, it is not necessary that constant pressure injection is better, which has been incorporated in previous literature for conventional foam. Stillrther, the novel injection strategy, CO_2 continuous injection with dissolved CO_2 -soluble surfactant, gave the best performance, which could lower the injection and water treatment cost.
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