Adsorption of organic ligands on low surface charge clay minerals: the composition in the aqueous interface region

被引:6
作者
Jelavic, S. [1 ]
Stipp, S. L. S. [1 ]
Bovet, N. [1 ]
机构
[1] Univ Copenhagen, Nanosci Ctr, Dept Chem, DK-2100 Copenhagen O, Denmark
关键词
OIL-RECOVERY; MONTMORILLONITE; WATER; SALINITY; ACIDS; MECHANISMS; SANDSTONES; SORPTION; MATTER; SOILS;
D O I
10.1039/c8cp01189c
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
An understanding of the mechanisms that control the adsorption of organic molecules on clay minerals is of interest in several branches of science and industry. Oil production using low salinity injection fluids can increase yields by as much as 40% over standard injection with seawater or formation water. The mechanism responsible for the low salinity response is still debated, but one hypothesis is a change in pore surface wettability. Organic contamination in soil and drinking water aquifers is a challenge for municipal water suppliers and for agriculture. A better understanding is needed for how mineral species, solution composition and pH affect the desorption of low molecular weight organic ligands from clay minerals and consequently their wettability. We used X-ray photoelectron spectroscopy under cryogenic conditions to investigate the in situ composition in the mineral-solution interface region in a series of experiments with a range of pH and ion concentrations. We demonstrate that both chlorite and kaolinite release organic molecules under conditions relevant for low salinity water flooding. This release increases with a higher solution pH but is only slightly affected by the character of the organic ligand. This is consistent with the observation that low salinity enhanced oil recovery correlates with the presence of chlorite and kaolinite. Our results indicate that the pore surface charge and salinity of formation water and injection fluids are key parameters in determining the low salinity response. In general, our results imply that clay mineral surface charge influences the composition in the interface through an affinity for organic molecules.
引用
收藏
页码:17226 / 17233
页数:8
相关论文
共 42 条
  • [1] Evaluation of Low-Salinity Enhanced Oil Recovery Effects in Sandstone: Effects of the Temperature and pH Gradient
    Aksulu, Hakan
    Hamso, Dagny
    Strand, Skule
    Puntervold, Tina
    Austad, Tor
    [J]. ENERGY & FUELS, 2012, 26 (06) : 3497 - 3503
  • [2] Predicting the pKa and Stability of Organic Acids and Bases at an Oil-Water Interface
    Andersson, M. P.
    Olsson, M. H. M.
    Stipp, S. L. S.
    [J]. LANGMUIR, 2014, 30 (22) : 6437 - 6445
  • [3] Mechanisms of pore water organic matter adsorption to montmorillonite
    Arnarson, TS
    Keil, RG
    [J]. MARINE CHEMISTRY, 2000, 71 (3-4) : 309 - 320
  • [4] Bovet N., 2018, UNPUB
  • [5] BRIEGLEB G, 1951, Z ELEKTROCHEM, V55, P250
  • [6] Coates J., 2000, ENCY ANAL CHEM, V12, P10815
  • [7] Theory of polyelectrolytes in solutions and at surfaces
    Dobrynin, AV
    Rubinstein, M
    [J]. PROGRESS IN POLYMER SCIENCE, 2005, 30 (11) : 1049 - 1118
  • [8] Adsorption of lactate and citrate on montmorillonite in aqueous solutions
    Elena Ramos, M.
    Javier Huertas, F.
    [J]. APPLIED CLAY SCIENCE, 2014, 90 : 27 - 34
  • [9] Chemical and mineralogical controls on humic acid sorption to clay mineral surfaces
    Feng, XJ
    Simpson, AJ
    Simpson, MJ
    [J]. ORGANIC GEOCHEMISTRY, 2005, 36 (11) : 1553 - 1566
  • [10] THE VIBRATIONAL SPECTRA OF BENZENE DERIVATIVES .1. NITROBENZENE, THE BENZOATE ION, ALKALI METAL BENZOATES AND SALICYLATES
    GREEN, JHS
    KYNASTON, W
    LINDSEY, AS
    [J]. SPECTROCHIMICA ACTA, 1961, 17 (05): : 486 - 502