Atomic Force Microscopy Study of Clay Mineral Dissolution

dc.contributor.authorBickmore, Barry Roberten
dc.contributor.committeechairHochella, Michael F. Jr.en
dc.contributor.committeememberRimstidt, J. Donalden
dc.contributor.committeememberZelazny, Lucian W.en
dc.contributor.committeememberGibbs, Gerald V.en
dc.contributor.committeememberRibbe, Paul H.en
dc.contributor.departmentGeological Sciencesen
dc.date.accessioned2014-03-14T20:06:42Zen
dc.date.adate2000-02-03en
dc.date.available2014-03-14T20:06:42Zen
dc.date.issued1999-12-09en
dc.date.rdate2001-02-03en
dc.date.sdate2000-01-11en
dc.description.abstractAn integrated program has been developed to explore the reactivity of 2:1 phyllosilicates (biotite and the clays montmorillonite, hectorite, and nontronite) with respect to acid dissolution using in situ atomic force microscopy (AFM). Three techniques are described which make it possible to fix these minerals and other small particles to a suitable substrate for examination in the fluid cell of the atomic force microscope. A suite of macros has also been developed for the Image SXM image analysis environment which make possible the accurate and consistent measurement of the dimensions of clay particles in a series of AFM images, so that dissolution rates can be measured during a fluid cell experiment. Particles of biotite and montmorillonite were dissolved, and their dissolution rates normalized to their reactive surface area, which corresponds to the area of their edge surfaces (A<sub>e</sub>). The A<sub>e</sub>-normalized rates for these minerals between pH 1-2 are all ~10E<sup>-8</sup> mol/m<sup>2</sup>*s, and compare very well to other A<sub>e</sub>-normalized dissolution rates in the literature. Differences between the A<sub>e</sub>-normalized rates for biotite and the BET-normalized rates (derived from solution chemical studies) found in the literature can be easily explained in terms of the proportion of edge surface area and the formation of leached layers. However, the differences between the A<sub>e</sub>-normalized montmorillonite rates and the literature values cannot be explained the same way. Rather, it is demonstrated that rates derived from solution studies of montmorillonite dissolution have been affected by the colloidal behavior of the mineral particles. Finally, the dissolution behavior of hectorite (a trioctahedral smectite) and nontronite ( a dioctahedral smectite) were compared. Based on the differential reactivity of their crystal faces, a model of their surface atomic structures is formulated using Hartman-Perdock crystal growth theory, which explains the observed data if it is assumed that the rate-determining step of the dissolution mechanism is the breaking of connecting bonds between the octahedral and tetrahedral sheets of the mineral structure.en
dc.description.degreePh. D.en
dc.identifier.otheretd-0111100-115522en
dc.identifier.sourceurlhttp://scholar.lib.vt.edu/theses/available/etd-0111100-115522/en
dc.identifier.urihttp://hdl.handle.net/10919/25984en
dc.publisherVirginia Techen
dc.relation.haspartBickmoreVita.pdfen
dc.relation.haspartetchpit.moven
dc.relation.haspartBickmorebrb_diss.pdfen
dc.rightsIn Copyrighten
dc.rights.urihttp://rightsstatements.org/vocab/InC/1.0/en
dc.subjectHClen
dc.subjectvermiculiteen
dc.subjectkaoliniteen
dc.subjectsapphireen
dc.subjectAFMen
dc.subjectpolyethyleneimineen
dc.subjectcrystal structureen
dc.subjectperiodic bond chainen
dc.subjectphlogopiteen
dc.subjectSFMen
dc.subjectbiotiteen
dc.subjectmontmorilloniteen
dc.subjectTempfixen
dc.titleAtomic Force Microscopy Study of Clay Mineral Dissolutionen
dc.typeDissertationen
thesis.degree.disciplineGeological Sciencesen
thesis.degree.grantorVirginia Polytechnic Institute and State Universityen
thesis.degree.leveldoctoralen
thesis.degree.namePh. D.en

Files

Original bundle
Now showing 1 - 3 of 3
Loading...
Thumbnail Image
Name:
Bickmorebrb_diss.pdf
Size:
3.23 MB
Format:
Adobe Portable Document Format
Loading...
Thumbnail Image
Name:
BickmoreVita.pdf
Size:
49.83 KB
Format:
Adobe Portable Document Format
Name:
etchpit.mov
Size:
381.59 KB
Format:
Video Quicktime