Suppr超能文献

碱作用下可逆反相乳液从O/W向W/O转变过程中性能变化的研究

Study on the Properties Changes of Reversible Invert Emulsion during the Process from O/W to W/O with Alkali.

作者信息

Liu Fei, Li Yongfei, Li Xiaqing, Wang Xuewu

机构信息

College of Petroleum Engineering, Shandong Institute of Petroleum and Chemical Technology, Dongying 257061, China.

Chemistry and Chemical Engineering, Xi'an Shiyou University, Xi'an 710065, China.

出版信息

Molecules. 2023 Dec 21;29(1):62. doi: 10.3390/molecules29010062.

Abstract

The reversible emulsion drilling fluid system combines the advantages of both oil-based and water-based drilling fluids, which can achieve ideal results in different stages of drilling and completion, and the system can be reused to effectively reduce costs. However, the research on reversible emulsions mainly focuses on the development of new reversible emulsifiers, while the specific phase transformation mechanism of reversible emulsion systems is still unclear. In this paper, a stable reversible emulsion was prepared using the reversible emulsifier DMOB as a raw material, and the reversible emulsion performance of the alkali response from the O/W emulsion phase to the W/O emulsion was studied. The microstructure of reversible emulsions was studied by a microscope, a cryogenic transmission electron microscopy, and a laser particle size analyzer. The changes in macroscopic properties of reversible emulsions in the process of alkali conversion were studied by pH, conductivity, demulsification voltage, static stability, viscosity, rheology, and other indicators, and the conversion mechanism of reversible emulsions from O/W emulsion ⟶ bicontinuous structure ⟶ O/W/O emulsion ⟶ W/O emulsion was clarified. The details are as follows: in the first stage, when the amount of NaOH ≤ 0.43 vol.%, the overall particle size of the emulsion decreases first and then increases with the increase in NaOH dosage. In the second stage, when the amount of NaOH was 0.45 vol.%, a double continuous structure was formed inside the emulsion. In the third stage, when the amount of NaOH is 0.48 vol.%, the O/W/O emulsion is formed, and with the increase in stirring time, the internal oil droplets gradually accumulate and are discharged from the water droplets, and finally, the W/O emulsion is formed. In the fourth stage, when the dosage of 0.50 vol.% ≤ NaOH ≤ 5.00 vol.%, the W/O emulsion was formed, and with the increase of NaOH dosage, the structure and compactness between water droplets increased first and then decreased. In the whole process, with the increase in the amount of NaOH solution, the total particle size of the emulsion first decreased and then increased.

摘要

可逆乳化钻井液体系兼具油基钻井液和水基钻井液的优点,在钻井和完井的不同阶段都能取得理想效果,且该体系可重复使用以有效降低成本。然而,目前对可逆乳液的研究主要集中在新型可逆乳化剂的开发上,而可逆乳液体系具体的相转变机理仍不明确。本文以可逆乳化剂DMOB为原料制备了稳定的可逆乳液,并研究了其从O/W乳液相向W/O乳液碱响应的可逆乳化性能。通过显微镜、低温透射电子显微镜和激光粒度分析仪研究了可逆乳液的微观结构。利用pH值、电导率、破乳电压、静态稳定性、粘度、流变学等指标研究了可逆乳液在碱转化过程中宏观性质的变化,阐明了可逆乳液从O/W乳液⟶双连续结构⟶O/W/O乳液⟶W/O乳液的转变机理。具体如下:第一阶段,当NaOH用量≤0.43 vol.%时,乳液的总体粒径随NaOH用量的增加先减小后增大。第二阶段,当NaOH用量为0.45 vol.%时,乳液内部形成双连续结构。第三阶段,当NaOH用量为0.48 vol.%时,形成O/W/O乳液,随着搅拌时间的增加,内部油滴逐渐聚集并从水滴中排出,最终形成W/O乳液。第四阶段,当0.50 vol.%≤NaOH用量≤5.00 vol.%时,形成W/O乳液,随着NaOH用量的增加,水滴间的结构和紧密程度先增大后减小。在整个过程中,随着NaOH溶液用量的增加,乳液的总粒径先减小后增大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/64af/10780228/5a616aef5f8d/molecules-29-00062-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验