Advanced Paraffin and Asphaltene in Crude Oils
Course Outline:
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Paraffin crystallization and Asphaltene flocculation Phenomena |
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Asphaltene flocculation curves and paraffin crystallization curves |
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Asphaltene Deposition Envelopes P-T- ADE |
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Near Infrared Spectroscopy (NIR) technology applied to Paraffin/Asphaltene phenomena |
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Spectrum/ Electromagnetic theory applied to paraffin/asphaltene phenomena |
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Laboratory procedure to obtain P-T-Compositional-Paraffin/Asphaltene |
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Crystallization/flocculation diagrams generated with NIR Spectroscopy technology |
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Absorbance behavior vs time in asphaltenic crudes |
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Modern Asphaltene stability method/ laboratory procedure |
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UV method to determine asphaltene stability (field application) |
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Experimental equipment (UV) for atmospheric experiments |
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Experimental equipment for elevated pressure & elevated temperatures |
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Effect of diluent and carbon dioxide asphaltene on flocculation in heavy oil solutions |
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Diagrams of stabilization power of chemicals |
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Selection and optimization of chemical injection by using diagrams of stabilization power method. |
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Boscan/Panuco crudes phenomena /research results and field application |
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New formation treatment method to control asphaltene deposition based on stability method |
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NIR curve interpretation and differentiation with P-T-ADE envelopes |
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Uses of NIR paraffin/asphaltene crystallization/flocculation curves to diagnose paraffin and asphaltene problems to establish strategies for reservoir exploitation |
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Asphaltene and Paraffin case histories ( Problem -Solutions) |
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Monophasic sampling technology for live-reservoir sampling collection |
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Magnetic and Electromagnetic principle and theory |
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Theory of Applied Magnetic/Electromagnetic fields on electric species in fluids |
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Design and specification and quality control of Permanent magnets/Electromagnetic devices applied to oil industry. |
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New Microbial technology to control paraffin and Asphaltene: Theory, field design, quality control and history cases. |
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Chemical method for in-situ heat generation and Nitrogen displacement for well and pipeline paraffin control systems. |
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Brief review Thermodynamic models to predict paraffin deposition |
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Brief review Thermodynamic-Molecular and Thermodynamic-Colloidal models to predict asphaltene deposition. |
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Course Summary and general final discussion |
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