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Novel Modified Rectorite Provides Reliable Rheology and Suspendability for Biodiesel Based Drilling Fluid

机译:新型改良综条基于生物柴油的钻井液提供可靠的流变学和悬浮性

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The use of organophilic clays as additives for providing proper rheological and filtration properties in non-aqueous drilling fluids (NADFs) has long been a topic of study. Currently, most of these clays are based on the modification of bentonite with quaternary ammonium salts. As new NADF systems emerging, novel clay-modification technologies are needed urgently to obtain more effective organophilic clays for specific drilling fluids. This paper introduced a modified rectorite designed for biodiesel-based drilling fluid (BBDF). Through a suspension production technique, rectorite, a clay mineral formed by dioctahedral mica layer and dioctahedral smectite layer with a 1:1 type of layer structure and a peculiar banded structure, was modified by non-ionic surfactants. The swell behavior of the modified rectorite in invert biodiesel emulsion was investigated. Effects of this novel organophilic clay on the electrical stability, rheological parameters and suspendability of biodiesel emulsion were also tested. The results showed that some non-ionic surfactants can be intercalated into the structure of rectorite, altering the wetting characteristic of the clay surface. Compared to traditional organophilic bentonite, modified rectorite has better swell performance in biodiesel emulsion. The abilities of modified rectorite to improve yield point (YP) and low end rheology (e.g., 6 rpm reading) of biodiesel emulsion are also significantly stronger than those of traditional organophilic bentonite, suggesting a higher efficiency of adjusting rheology and suspendability. Combined with appropriate rheological modifiers (RMs), the modified rectorite can provide formulated BBDF a great suspendability, which is evidenced by static barite-sag test. Electrical stability of biodiesel emulsion was also enhanced with the addition of the modified rectorite due to the forming of Pickering emulsion. This novel modified clay is a reliable guarantee of steady properties of BBDF. The origin of its good performance can be attributed to the selection of suitable surfactants and the rational preparation technology. Rectorite is widespread all around the world and there are some rectorite mining areas in various countries although the degree of utilization for this clay is still low at present. In view of the relatively lower price of rectorite compared to bentonite, modified rectorite can be considered as a high-performance, cost- effective viscosifier for BBDF and perhaps, other NADFs.
机译:用于非水性钻井液(NADFs)提供适当的流变学和过滤特性的使用亲有机粘土作为添加剂的长期以来研究的课题。目前,大多数这些粘土的基于膨润土与季铵盐修改。随着新系统NADF新兴,需要新颖的粘土改性技术迫切以获得用于特定钻井液更有效的亲有机粘土。本文介绍的改性累托石设计用于基于生物柴油基钻井液(BBDF)。通过悬架的生产技术,累托石,通过双八面体云母层和双八面体绿层用1形成的粘土矿物:1型层结构的和特有的带状组织,是由非离子表面活性剂改性。在生物柴油的反相乳液中的改性累托石的膨胀行为进行了研究。上的电稳定性这种新颖的亲有机性粘土的影响,流变参数和生物柴油乳液的悬浮性也进行了测试。结果表明,一些非离子表面活性剂可以被嵌入到累托石的结构中,改变粘土表面的润湿特性。相较于传统的有机膨润土,改性累托石具有乳化生物柴油的溶胀更好的性能。改性累托石的能力,以提高屈服点(YP)和低端流变生物柴油乳状液(例如,6rpm下读数)也比传统的那些有机膨润土,提示调节流变学和悬浮性的更高的效率显著更强。用合适的流变改性(RMS)相结合时,改性累托石可以提供配制BBDF很大悬浮性,这是由静态重晶石-垂试验证明。生物柴油乳液的电稳定性也增强在添加改性累托石由于皮克林乳液的形成。这种新颖的改性粘土是BBDF的稳定特性的可靠的保证。其良好的性能起源可以归结为合适表面活性剂的选择和合理的制备技术。累托石是世界各国的普遍一切,也有在不同国家的累托石矿区虽然利用这种粘土的程度仍然很低,目前。鉴于相对较低的价格相比膨润土累托石的,改性累托石可以被认为是一个高性能,经济有效的增粘剂为BBDF和或许,其他NADFs。

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