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Application of Multiple Regression and Design of Experiments for Modelling the Effect of Monoethylene Glycol in the Calcium Carbonate Scaling Process

机译:多元回归法的应用和模拟碳酸乙二醇垢制备过程中单乙二醇影响的模型设计

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摘要

To avoid gas hydrate formation during oil and gas production, companies usually employ thermodynamic inhibitors consisting of hydroxyl compounds, such as monoethylene glycol (MEG). However, these inhibitors may cause other types of fouling during production such as inorganic salt deposits (scale). Calcium carbonate is one of the main scaling salts and is a great concern, especially for the new pre-salt wells being explored in Brazil. Hence, it is important to understand how using inhibitors to control gas hydrate formation may be interacting with the scale formation process. Multiple regression and design of experiments were used to mathematically model the calcium carbonate scaling process and its evolution in the presence of MEG. It was seen that MEG, although inducing the precipitation by increasing the supersaturation ratio, actually works as a scale inhibitor for calcium carbonate in concentrations over 40%. This effect was not due to changes in the viscosity, as suggested in the literature, but possibly to the binding of MEG to the CaCO3 particles’ surface. The interaction of the MEG inhibition effect with the system’s variables was also assessed, when temperature’ and calcium concentration were more relevant.
机译:为了避免在石油和天然气生产过程中形成天然气水合物,公司通常使用由羟基化合物组成的热力学抑制剂,例如单乙二醇(MEG)。但是,这些抑制剂可能在生产过程中引起其他类型的结垢,例如无机盐沉积物(水垢)。碳酸钙是主要的结垢盐之一,引起了极大的关注,尤其是对于巴西正在开发的新的预盐井。因此,重要的是要了解使用抑制剂控制气体水合物的形成如何与水垢形成过程相互作用。多元回归和实验设计用于数学建模碳酸钙结垢过程及其在存在MEG的情况下的演变。可以看出,MEG尽管通过增加过饱和率来诱导沉淀,但实际上可作为浓度超过40%的碳酸钙的阻垢剂。这种作用不是由于文献中提出的粘度变化引起的,而是可能是由于MEG与CaCO3颗粒表面的结合所致。当温度和钙浓度更相关时,还评估了MEG抑制作用与系统变量的相互作用。

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