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Three-Dimensional Inverse Opal TiO_2 Coatings to Enable the Gliding of Viscous Oils

机译:三维反蛋白石TiO_2涂层,使粘性油的滑动

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摘要

As a result of the increasing emphasis on accessing unconventional deposits of heavy oil and bitumen to meet global energy needs, there is an intense focus on addressing the rheological challenges involved in the transportation, handling, and processing of viscous hydrocarbons. While the design of superhydrophobic surfaces has been extensively explored, the fabrication of surfaces nonwetted by low-surface-tension and high-viscosity oils that can be scaled to meet industrial needs remains to be adequately addressed. Here, we demonstrate that colloidally templated architectures of TiO_(2) particles applicable through a facile spray deposition process can form 3D inverse opal coatings adhered to low-alloy steels. Low-temperature sintering induces necking of particles, giving rise to an interconnected framework of plastrons surrounded by necked TiO_(2) ligaments. Surface functionalization with 1iH ,1iH ,2iH ,2iH -perfluorooctanephosphonic acid yields a helical surface monolayer with pendant trifluoromethyl moieties. The combination of interconnected plastrons, re-entrant curvature, and low surface energy suspends liquid droplets, of both water and heavy oil, in the Cassie–Baxter regime, yielding contact angles of 164° ± 5° and 161° ± 2°, respectively. The interconnected network of plastrons further enables the facile gliding of heavy oil (100 s) upon immersion within a bath, whereas a comparable untreated surface remains completely fouled. The performance of this coating suggests a promising solution to mitigate the challenges of handling viscous oils in midstream applications and furthermore delineates a route to designing coatings for a broad host of rheologically challenging fluids.
机译:由于越来越强调进入重型油和沥青的非传统沉积,以满足全球能源需求,旨在解决粘性碳氢化合物的运输,处理和加工的流变挑战。虽然过度探索了超疏水性表面的设计,但是通过低表面张力和高粘度油的表面的制造仍有充分寻址以满足工业需求。在这里,我们证明了通过容易喷射沉积工艺适用的TiO_(2)颗粒的胶体模板架构可以形成粘附到低合金钢的3D逆蛋白石涂层。低温烧结诱导粒子的颈缩,从而引起由颈纤维的颈部包围的保质互连框架。表面官能化用1℃,1℃,2℃,2℃,2 H-Pillforooroctaneph膦酸产生螺旋状表面单层,其具有侧链三氟甲基部分。在Cassie-Baxter状态下,互连的保质,再聚合曲率和低表面能悬挂液滴,再加上水和重油的液滴,分别产生164°±5°和161°±2°的接触角。互联网的互连网络进一步使得在浸入浴中,在浸入浴时使重油(<100s)的容纳滑动,而相当的未处理表面保持完全污染。该涂层的性能表明了一种有希望的解决方案,以减轻在中游应用中处理粘性油的挑战,而且还描​​绘了用于设计涂层的途径,用于广泛的流变学挑战液。

著录项

  • 来源
    《Energy & fuels》 |2020年第11期|13606-13613|共8页
  • 作者单位

    Department of Chemistry Texas A&M University;

    Department of Chemistry Texas A&M University;

    Department of Chemistry Texas A&M University;

    Department of Chemistry Texas A&M University;

    Cenovus Energy Inc;

    Department of Chemistry Texas A&M University;

    Department of Chemistry Texas A&M University;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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