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Molecular Assemblies in Asphaltenes and Their High-Temperature Coke Products. 2. Levels of Molecular Organization

机译:沥青质及其高温焦炭产品中的分子组装。 2.分子组织水平

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An initial electron crystallographic investigation of the molecular organization of coke, described in a previous report, attempted to understand how long- or short-range order (Le., mutual orientation beyond or below approximately 10 fim) found, respectively, in sponge and shot coke, might be detected. Signs of local nucleation were found at very small selected area diameters (e.g., 0.25-1.25 μn) with a test case based on the microcarbon residue test (MCRT), made on a sponge coke-forming sweet vacuum tower bottoms (VTB) feed. In MCRT experiments on sweet VTB, a 490 °C annealing temperature was used instead of the 500 °C employed in our earlier study. At 5 min annealing time, electron diffraction patterns revealed the formation of small nuclei within a 0.25 fim diameter. The smallest detected arcing of (002) reflection, found at 5 min annealing time, persists for all longer annealing times; only the distribution of these angles decreased. At a 5-fold increase of selected area diameter (1.25 fim), and at suitably small annealing times ( < 15 min), some regions were found to include two competing nuclei. At longer annealing times only singly oriented nuclei were found within this sampled area. These electron diffraction results show a good correlation with the polarized-light optical microscope images of 5,10,15, and 30 min annealing times in which small mesophase spheres form, grow, and coalesce into large mosaics and domains. At another nearly 5-fold increase of selected area diameter (5.8/Jm), shot and sponge coke could finally be distinguished from one another. The former is much more disordered (average (002) arc angle 134(60)°) than the latter (average (002) arc angle 40(13)°). Thus, nuclei for the sponge coke can grow to larger lateral limits with approximately the same orientation of stacked rings. This result has been repeated in a time sequence based on MCRT trials carried out at 490 °C on a Maya crude vacuum residuum, known to produce shot coke in coker units. Also, polarized light microscopy results are in accord with the electron diffraction observations, revealing the overall distribution of smaller coherent paracrystalline domains. Tests of other commercial cokes, including those from various parts of a Flexicoker unit, and material from a steam cracker, reveals that the molecular ordering is roughly dependent on the H/C atomic ratio of the resulting product. In agreement with earner observations, long-range ordering of coke, Le., the sponge coke product, is favored by the least amount of aromatic ring heteroatoms. Both types of coke appear first as small nuclei, but only the lateral growth of the sponge coke is relatively unconstrained.
机译:先前报告中描述了对焦炭分子结构的初步电子晶体学研究,试图了解在海绵和铅丸中分别发现了长程或短程顺序(Le,相互取向超过或低于约10 fim)的原因。焦炭,可能被检测到。在很小的选定区域直径(例如0.25-1.25μn)上发现了局部成核的迹象,该测试案例是基于在形成海绵状焦的甜味真空塔塔底料(VTB)进料上进行的微碳残留物测试(MCRT)的测试案例。在甜味VTB的MCRT实验中,使用了490°C的退火温度,而不是我们之前的研究中使用的500°C。在5分钟的退火时间,电子衍射图谱显示在0.25微米直径内形成了小核。在5分钟的退火时间,发现的最小的(002)反射电弧在所有较长的退火时间内均保持不变;只有这些角度的分布减小了。在选定的区域直径(1.25微米)增加5倍时,在适当的退火时间(<15分钟)内,发现某些区域包含两个竞争核。在较长的退火时间下,在该采样区域内仅发现单取向的核。这些电子衍射结果显示出与5、10、15和30分钟退火时间的偏光光学显微镜图像具有良好的相关性,在退火时间中,小的中间相球形成,生长并聚集成大的镶嵌体和区域。在选定的区域直径(5.8 / Jm)再增加近5倍时,最终可以将散焦和海绵​​状焦炭彼此区分开。前者比后者(平均(002)弧角40(13)°)混乱得多(平均(002)弧角134(60)°)。因此,海绵状焦炭的核可以在堆叠环大致相同的方向上生长到更大的横向极限。根据在490°C上对Maya粗真空渣油进行的MCRT试验,按时间顺序重复了此结果,该渣油已知会在焦化装置中产生散装焦炭。而且,偏振光显微镜结果与电子衍射观察结果一致,揭示了较小的相干顺晶畴的整体分布。对其他商用焦炭的测试(包括来自Flexicoker装置各个部分的焦炭和来自蒸汽裂化炉的原料)的测试表明,分子顺序大致取决于所得产品的H / C原子比。与赚钱者的观察结果一致,海绵焦炭产品焦炭的远距离订购受芳环杂原子数量最少的青睐。两种类型的焦炭首先以小核的形式出现,但只有海绵状焦炭的横向生长相对不受限制。

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  • 来源
    《Energy & fuels》 |2011年第sepaaocta期|p.4580-4585|共6页
  • 作者单位

    Corporate Strategic Research, ExxonMobil Research and Engineering Company, 1545 Route 22 East, Annandale, New Jersey 08801, United States;

    Corporate Strategic Research, ExxonMobil Research and Engineering Company, 1545 Route 22 East, Annandale, New Jersey 08801, United States;

    Corporate Strategic Research, ExxonMobil Research and Engineering Company, 1545 Route 22 East, Annandale, New Jersey 08801, United States;

  • 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
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  • 入库时间 2022-08-18 00:41:41

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