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Study of the formation and breaking of extra-heavy-crude-oil-in-water emulsions-A proposed strategy for transporting extra heavy crude oils

机译:研究超重原油水包油乳液的形成和分解-一种提议的重质原油运输策略

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摘要

At present, many petroleum copmpanies in the world are facing processing problems about crude oil extraction, production and refining. For example, conventional pipelines are not suitable for pipelining of extra heavy oils and bitumen from the reservoirs to the refineries. According to the aforesaid, a procedure was developed for the formation of an oil-in-water emulsion employing a Mexican crude oil and its subsequent phase separation as a strategy for the pipelining of extra heavy crude oils. An O/W emulsion considerably decrease the viscosity of an extra heavy crude oil and facilitating its transport through pipelines, but crude oil must be dehydrated before further processing. We carried out a screening of commercial and synthetic surfactants for emulsion preparation as well as for breakage. The emulsion was characterized by calorimetry, optical techniques, particle size and dynamic viscosity. The stability of emulsions was evaluated by the kinetics of water separation in the presence of surfactants and heating. We also developed a factorial 2(k) design to study emulsion breakage with factors such as temperature, surfactant concentration and pH. All surfactants developed by ours are low toxic and full biodegradable since they atre synthesized from glucose and glycine, respectively. Thus, we developed an environmental friendly approach to facilitate crude oil transport through pipelines. (C) 2015 Elsevier B.V. All rights reserved.
机译:目前,世界上许多石油公司都面临着有关原油提取,生产和精炼的加工问题。例如,常规管道不适用于将超重油和沥青从储层输送到精炼厂的管道。根据上述,开发了一种使用墨西哥原油形成水包油乳液的方法,并随后进行相分离作为超重质原油的管道输送策略。 O / W乳液可大大降低超重原油的粘度并促进其通过管道运输,但在进一步加工之前必须对原油进行脱水。我们对用于乳液制备和破损的商业和合成表面活性剂进行了筛选。通过量热法,光学技术,粒度和动态粘度来表征乳液。通过在存在表面活性剂和加热的情况下水分离的动力学来评估乳液的稳定性。我们还开发了阶乘2(k)设计来研究乳液破损的温度,表面活性剂浓度和pH等因素。我们开发的所有表面活性剂均分别由葡萄糖和甘氨酸合成,因此低毒且可完全生物降解。因此,我们开发了一种环境友好的方法来促进原油通过管道运输。 (C)2015 Elsevier B.V.保留所有权利。

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