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通过单一和复合溶剂从哈勒法亚油田原油沥青样品中回收沥青的工艺、参数及机理

Bitumen Recovery from Crude Bitumen Samples from Halfaya Oilfield by Single and Composite Solvents-Process, Parameters, and Mechanism.

作者信息

Liu Yunfeng, Qiu Zhengsong, Zhong Hanyi, Nie Zhen, Li Jia, Huang Weian, Zhao Xin

机构信息

School of Petroleum Engi neering, China University of Petroleum (East China), Qingdao 266580, China.

China National Petroleum Corporation (CNPC) Research Institute of Petroleum Exploration and Development, Beijing 100083, China.

出版信息

Materials (Basel). 2019 Aug 21;12(17):2656. doi: 10.3390/ma12172656.

Abstract

Since 2007, heterogeneous, high-viscosity active bituminous formations have often occurred during the drilling process in Yadavaran oilfield (Iran), Halfaya oilfield (Iraq), and tar sands (Canada). The formation of bitumen exhibits plastic and creep properties, and its adhesion is strong, so drilling accidents are easily caused, such as adhering vibrating screen, drill pipe sticking, lost circulation, and even well abandonment. These complex problems cause huge economic losses. Solvents used to dissolve bitumen are a feasible technology to remove bitumen effectively. In order to solve this problem, we used crude bitumen samples from Halfaya oilfield to study the relation between the bitumen component and different solvents. In this study, the temperature, crude bitumen sample to solvent ratio, stirring rate, stirring time, and ultrasound time on bitumen recovery by toluene were investigated by a single factor experiment. The optimum process parameter for bitumen recovery was obtained. Toluene, n-heptane, tetrahydrofuran, cyclohexane, cyclopentane, ethyl acetate, and n-pentane were chosen as the solvents for single solvent extraction and composite solvent extraction. The bitumen recovery increased significantly with the use of a composite solvent compared to a single solvent. The composite solvent ratio was 1:1. The highest bitumen recovery was 98.9 wt% by toluene/cyclohexane composite solvent. The SARA (saturates, aromatics, resins, and asphaltenes) components of the bitumen were analyzed. The toluene showed the highest asphaltene content, while the n-alkanes showed the lowest asphaltene content. The higher the asphaltene content, the higher the bitumen recovery. The composite solvent obtained the highest asphaltene content and bitumen recovery. The viscosity of bitumen extraction by different solvents was measured. The lower the bitumen viscosity, the higher the bitumen recovery. The element analysis indicated the solvent's ability to extract bitumen colloids with the C/H ratio. This study provides a reliable theoretical basis for the subsequent adoption of effective anti-bitumen polluted drilling fluid additives.

摘要

自2007年以来,在伊朗的亚达瓦兰油田、伊拉克的哈勒法亚油田以及加拿大的油砂开采过程中,钻井时经常出现非均质、高粘度的活性沥青地层。沥青的形成具有塑性和蠕变特性,且附着力强,因此容易引发钻井事故,如振动筛粘附、钻杆卡钻、漏失,甚至弃井。这些复杂问题造成了巨大的经济损失。用于溶解沥青的溶剂是有效去除沥青的可行技术。为了解决这个问题,我们使用了哈勒法亚油田的原油沥青样品来研究沥青成分与不同溶剂之间的关系。在本研究中,通过单因素实验研究了温度、原油沥青样品与溶剂的比例、搅拌速率、搅拌时间以及超声时间对甲苯回收沥青的影响。获得了回收沥青的最佳工艺参数。选择甲苯、正庚烷、四氢呋喃、环己烷、环戊烷、乙酸乙酯和正戊烷作为单溶剂萃取和复合溶剂萃取的溶剂。与单溶剂相比,使用复合溶剂时沥青回收率显著提高。复合溶剂比例为1:1。甲苯/环己烷复合溶剂的最高沥青回收率为98.9 wt%。分析了沥青的SARA(饱和烃、芳烃、树脂和沥青质)成分。甲苯的沥青质含量最高,而正构烷烃的沥青质含量最低。沥青质含量越高,沥青回收率越高。复合溶剂的沥青质含量和沥青回收率最高。测量了不同溶剂萃取沥青的粘度。沥青粘度越低,沥青回收率越高。元素分析表明了溶剂以C/H比萃取沥青胶体的能力。本研究为后续采用有效的抗沥青污染钻井液添加剂提供了可靠的理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8439/6747588/4074c46549b3/materials-12-02656-g001.jpg

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