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首页> 外文期刊>Journal of Petroleum Science & Engineering >Kinetic hydrate inhibitor removal from produced waters by solvent extraction
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Kinetic hydrate inhibitor removal from produced waters by solvent extraction

机译:通过溶剂萃取从生产水中去除动力学水合物抑制剂

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Kinetic hydrate inhibitors (KHIs) offer an attractive option for the prevention of gas hydrate problems in hydrocarbon production operations, and are seeing increasing use within the industry as an alternative to traditional inhibition methods. However, there are several challenges emerging in the handling/treatment and disposal of produced waters containing KHIs. KHIs typically contain polymers as the active component and these can precipitate as solid/semi-solid deposits at higher temperatures and/or in the presence of saline fluids, potentially causing fouling problems. This can occur during produced water handling, for example where KHI containing waters may mix with higher temperature/higher salinity waters prior to re-injection, fouling storage/pumping facilities. Furthermore, precipitation may occur in response to high temperatures experienced during re-injection into formations, where fouling can potentially result in reduced injection efficiency. In addition, there is increasing interest in reducing levels of thermodynamic inhibitor used for hydrate prevention - particularly in the case of MEG - by combining these with KHIs. In this instance, KHI drop-out could result in fouling of MEG regeneration units, interfering with production operations. Here we report the results of preliminary investigations into a technique for KHI removal from produced waters based on solvent extraction. The method uses small fractions of largely water immiscible solvents with a high affinity for KHI polymers. Contact between the solvent and aqueous KHI results in strong partitioning of the KHI polymer into the solvent. The solvent containing the polymer can then be separated by standard physical methods used to separate water and hydrocarbons (e.g. gravity settling, centrifugal separation, coalescing separation). Results show that it is possible to remove up to 100% (within detection limits) of some common KHI polymers (e.g. poly-n-vinylcaprolactam/PVCap), potentially providing a simple means to eliminate or mitigate fouling problems associated with KHI containing produced water handling/treatment. (C) 2016 Elsevier B.V. All rights reserved.
机译:动力学水合物抑制剂(KHIs)为预防烃类生产作业中的天然气水合物问题提供了一个有吸引力的选择,并且在工业上,人们逐渐看到它是传统抑制方法的替代方法。然而,在处理/处理和处置含有KHI的采出水方面存在一些挑战。 KHI通常包含聚合物作为活性成分,并且它们在较高温度下和/或在盐水的存在下会以固体/半固体沉积物形式沉淀,从而可能导致结垢问题。这可能发生在采出水处理过程中,例如,在含有KHI的水可能会在再注入,结垢存储/抽水设施之前与较高温度/较高盐度的水混合的情况。此外,可能会因重新注入地层中经历的高温而发生沉淀,其中结垢可能会导致注入效率降低。另外,通过将它们与KHIs组合,降低用于水合物预防的热力学抑制剂的水平,尤其是在MEG的情况下,引起了越来越多的关注。在这种情况下,KHI脱落可能会导致MEG再生装置结垢,从而干扰生产操作。在这里,我们报告了基于溶剂萃取从生产水中去除KHI的技术的初步研究结果。该方法使用了对KHI聚合物具有高亲和力的小部分高度不溶于水的溶剂。溶剂与KHI水溶液之间的接触导致KHI聚合物强烈分配到溶剂中。然后可以通过用于分离水和碳氢化合物的标准物理方法(例如重力沉降,离心分离,聚结分离)分离包含聚合物的溶剂。结果表明,有可能去除高达100%(在检测限内)的某些常见KHI聚合物(例如,聚正乙烯基己内酰胺/ PVCap),从而可能提供一种简单的方法来消除或减轻与含有KHI的采出水相关的结垢问题处理/治疗。 (C)2016 Elsevier B.V.保留所有权利。

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