On the formation and properties of asphaltene nanoaggregates and clusters by DC-conductivity and centrifugation

被引:118
|
作者
Goual, Lamia [1 ]
Sedghi, Mohammad [1 ]
Zeng, Huang [2 ]
Mostowfi, Farshid [2 ]
McFarlane, Richard [3 ]
Mullins, Oliver C. [4 ]
机构
[1] Univ Wyoming, Dept Chem & Petr Eng, Laramie, WY 82071 USA
[2] Schlumberger DBR Technol Ctr, Edmonton, AB T6N 1M9, Canada
[3] Technol Futures, Alberta Innovates, Edmonton, AB T6N 1E4, Canada
[4] Schlumberger Doll Res Ctr, Cambridge, MA 02139 USA
关键词
Asphaltene; Resin; Nanoaggregate; Cluster; CNAC; MOLECULAR-WEIGHT DISTRIBUTIONS; CRITICAL MICELLE CONCENTRATION; CRUDE OILS; FLUORESCENCE SPECTROSCOPY; SURFACE-CHEMISTRY; MASS-DISTRIBUTION; LANGMUIR FILM; SIZE; AGGREGATION; PRECIPITATION;
D O I
10.1016/j.fuel.2011.02.025
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
The hierarchical nanocolloidal structure of asphaltenes in solvent and even in crude oil has recently been delineated by a variety of techniques. It is highly desirable to compare results for the same samples from various techniques dependent on different physics. Here, the critical nanoaggregate concentration (CNAC) of specific asphaltenes is determined using both DC-conductivity and centrifugation; excellent agreement is found. In addition, the role of the lightest asphaltenes (or heaviest resins) in nanoaggregation is now amenable to direct measurement; inclusion of this weaker binding fraction does not materially impact the CNAC except by a trivial effect of dilution of the aggregating asphaltenes. DC-conductivity shows there is no observable change in CNAC over a moderate temperature range indicating that the enthalpy of formation of the nanoaggregate is zero. A simple analysis reveals that the entropy of nanoaggregate formation is positive, in agreement with previous work. Finally, the critical clustering concentration is observed at higher concentrations, and as always the clusters of nanoaggreates are found to have a small aggregation numbers. As with the CNAC, the heaviest resins do not affect the clustering concentration except by a trivial dilution effect. (c) 2011 Elsevier Ltd. All rights reserved.
引用
收藏
页码:2480 / 2490
页数:11
相关论文
共 50 条
  • [31] Dc-conductivity of poly(N-vinylcarbazole) containing iron(III)-phthalocyanine side-units
    Zamora, F
    Gonzalez, MC
    POLYMER, 1997, 38 (02) : 263 - 267
  • [32] Influence of water uptake on the electrical DC-conductivity of insulating LDPE/MgO nanocomposites (vol 152, pg 11, 2017)
    Nilsson, Fritjof
    Karlsson, Mattias
    Pallon, Love
    Giacinti, Marco
    Olsson, Richard T.
    Venturi, Davide
    Gedde, Ulf W.
    Hedenqvist, Mikael S.
    COMPOSITES SCIENCE AND TECHNOLOGY, 2019, 181
  • [33] INFLUENCE OF MO-IMPURITIES AND CO-IMPURITIES ON THE NON-OHMIC DC-CONDUCTIVITY IN NBSE3
    GRUBER, H
    SASSIK, H
    JOURNAL DE PHYSIQUE, 1983, 44 (NC-3): : 1717 - 1720
  • [34] CLUSTERS - PROPERTIES AND FORMATION
    CASTLEMAN, AW
    KEESEE, RG
    ANNUAL REVIEW OF PHYSICAL CHEMISTRY, 1986, 37 : 525 - 550
  • [35] Dynamics of glass-forming liquids .2. Detailed comparison of dielectric relaxation, dc-conductivity, and viscosity data
    Stickel, F
    Fischer, EW
    Richert, R
    JOURNAL OF CHEMICAL PHYSICS, 1996, 104 (05): : 2043 - 2055
  • [36] TEMPERATURE-DEPENDENCE OF DC-CONDUCTIVITY IN POLY(3-ALKYLTHIOPHENES) IN TEMPERATURE REGIME 20-400K
    VAKIPARTA, K
    MOULTON, J
    HEEGER, AJ
    SMITH, P
    ISOTALO, H
    STUBB, H
    LOPONEN, M
    SYNTHETIC METALS, 1991, 41 (03) : 903 - 906
  • [37] COMPARISON OF FAR-INFRARED-CONDUCTIVITY AND DC-CONDUCTIVITY OF ELECTRON-SYSTEMS LATERALLY PATTERNED BY LOW-ENERGY ION-BEAM EXPOSURE
    LETTAU, C
    WENDEL, M
    SCHMELLER, A
    HANSEN, W
    KOTTHAUS, JP
    BOHM, G
    WEIMANN, G
    HOLLAND, M
    SOLID-STATE ELECTRONICS, 1994, 37 (4-6) : 1207 - 1210
  • [38] Dielectric properties and dc conductivity of lampblack
    Devi, KN
    Sharma, HB
    Sarma, HN
    INDIAN JOURNAL OF PHYSICS, 2005, 79 (03) : 309 - 311
  • [39] Properties and Formation of Star Clusters
    M. E. Sharina
    Astrophysics, 2016, 59 : 126 - 144
  • [40] Properties and Formation of Star Clusters
    Sharina, M. E.
    ASTROPHYSICS, 2016, 59 (01) : 126 - 144