High-efficiency Extraction of Bitumen from Oil Sands Using Mixture of Ionic Liquid [Emim][BF4] and D

来源 :中国炼油与石油化工(英文版) | 被引量 : 0次 | 上传用户:tony_guang
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
An ionic liquid (IL), 1-ethyl-3-methyl imidazolium tetrafluoroborate ([Emim][BF4]), was used to enhance bitumen recovery from oil sands by dichloromethane solvent extraction. A multiphase system could be formed by simply mixing the components at ambient temperature, consisting of sands and clays, mixtures of ionic liquid and dichloromethane, and concentrated bitumen layer. The results demonstrated that [Emim][BF4] increased the bitumen recovery up to 92%. Much less clay fines were found in the recovered bitumen than those formed by using dichloromethane solvent extraction alone, and the dichloromethane residue was not detected in the spent sands. We proposed that [Emim][BF4] had an ability to reduce the adhesion of bitumen to sand, resulting in an improved separation efficiency. Furthermore, [Emim][BF4] could facilitate the transfer of the extracted bitumen to the surface interface, and then the bitumen was auto-partitioned to a separate immiscible phase for ease of harvesting. This technology circumvented the issue of high consumption of distillation energy due to separation of bitumen phase and low boiling point of dichloromethane. [Emim][BF4] and dichloromethane could be readily recycled through the system and used repeatedly. After ten cycles, the bitumen recovery remained above 88%. Initial scale-up work suggested that this approach would form the basis for a viable large-scale process.
其他文献
Introducing reduced metal and nitrogen species is a powerful strategy to improve the reactivity of carbon-based materials for selective catalytic reduction of N
Carboxyl-functionalized SBA-15(COOH/SBA-15)was prepared by a one-pot synthesis method and characterized.COOH-SBA-15/LZM-LP,an immobilized bi-enzyme(lipase and l
IM-5 zeolite was synthesized by hydrothermal crystallization method with 1,5-bis(N-methylpyrrolidinium)pentane bromide using the precursors N-methylpyrrolidine
H2WO4/GO catalyst was synthesized by the immersion method and was characterized by using X-ray diffraction(XRD),Fourier-transform infrared spectroscopy(FT-IR),s
Vehicular networks are expected to empower auto mated driving and intelligent transportation via vehicle-to-everything(V2X)communications and edge/cloud-assisted computation,and in the meantime Cellular V2X(C-V2X)is gaining wide support from the global in
The development of non-noble metal oxidation reduction catalysts(ORR)to improve microbial fuel cell(MFC)performance remains extremely challenging.Herein,the nit
陕西延长石油西北橡胶有限责任公司,前身为西北橡胶总厂,创建于1959年,是国家“二五”时期为西北、西南地区军工配套而建设的综合性橡胶制品企业。现为世界轮胎75强企业、中国胶管“十强”企业和中国橡胶制品“十强”企业。传承60年,建设新“西橡”。在“十三五”发展取得显著成绩的基础上,站在“十四五”开局的新起点,西橡制定了高质量发展目标,再谱“十四五”发展新篇章。
The deep convolutional neural network(CNN)is exploited in this work to conduct the chal-lenging channel estimation for mmWave massive mul-tiple input multiple o
以双氧水为氧化剂,硫化促进剂M和环己胺为原料合成促进剂CBS,配比环己胺∶促进剂M∶H2O2=2.5∶1∶1.2,反应温度为38℃~42℃,双氧水(15%)滴加时间为1.5h.双氧水在氧化过程中,部
With the emerging connected autonomous driving paradigm,more advanced applications leveraging vehicular communications are drawing tremendous attentions.In order to analyze the feasibility and performance of these applications,it is necessary to build an