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Optimized Droplet Sizing of Water-in-Crude Oil Emulsions Using Nuclear Magnetic Resonance

机译:使用核磁共振优化水土油乳液的液滴尺寸

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Water-in-crude oil emulsions are an increasing problem during production. Essential to any emulsion breaking method is an ability to accurately measure droplet size distributions; this is rendered extremely difficult given that the samples are both concentrated and opaque. Here, we systematically consider the use of a standard, low-field benchtop nuclear magnetic resonance (NMR) apparatus to accurately measure the droplet size distributions. Such measurements are challenging because the NMR signal from the oil phase erroneously contributes to the measured water droplet size distribution. Conventionally, the oil-phase signal is nulled-out based on differences in the NMR T_1 relaxation parameter between water and oil. However, in the case of crude oil, the oil presents a broad T1 distribution, rendering this approach infeasible. On the basis of this oil T1 distribution, we present an optimization routine that adjusts various NMR measurement timing parameters [observation time (A) and inversion time (T_(inv))] to effectively eliminate this erroneous crude oil contribution. An implementation of this optimization routine was validated against measurements performed using unambiguous chemical-shift selection of the water (droplet) signal, as would conventionally be provided by high-field superconducting NMR spectrometers. We finally demonstrate successful droplet sizing of a range of water-in-crude oil emulsions.
机译:原油乳液在生产过程中是一种越来越多的问题。对于任何乳液破碎方法至关重要,是准确测量液滴尺寸分布的能力;如果样品均集中和不透明,则这非常困难。在这里,我们系统地考虑使用标准的低场台式核磁共振(NMR)设备,以精确测量液滴尺寸分布。这种测量是具有挑战性的,因为来自油相的NMR信号错误地有助于测量的水滴尺寸分布。通常,基于水和油之间的NMR T_1弛豫参数的差异来淘汰油相信号。然而,在原油的情况下,油呈广泛的T1分布,使这种方法不可行。在该油T1分布的基础上,我们提出了一种调整各种NMR测量定时参数[观察时间(A)和反转时间(T_(INV))]的优化程序,以有效地消除这种错误的原油贡献。根据使用水(液滴)信号的明确化学转换选择进行的测量来验证该优化例程的实施,如通常由高场超导NMR光谱仪提供的。我们终于展示了一系列水性油乳液的成功液滴。

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