Partitioning Between Soil-Adsorbed and Planktonic Escherichia coli

dc.contributor.authorHenry, Leigh-Anneen
dc.contributor.committeechairDillaha, Theo A. IIIen
dc.contributor.committeememberLove, Nancy G.en
dc.contributor.committeememberMostaghimi, Saieden
dc.contributor.departmentBiological Systems Engineeringen
dc.date.accessioned2014-03-14T20:35:16Zen
dc.date.adate2004-05-18en
dc.date.available2014-03-14T20:35:16Zen
dc.date.issued2004-04-27en
dc.date.rdate2004-05-18en
dc.date.sdate2004-05-06en
dc.description.abstractA scarcity of comparable research on the transport of bacteria has forced hydrologic models to assume that bacteria travel as dissolved chemicals. In reality, most bacteria preferentially attach to soil aggregates, and behave very differently from planktonic bacteria. The goal of this research project was to identify and evaluate a laboratory method for partitioning between attached and planktonic bacteria that could be used to improve hydrologic modeling. Attachment was measured indirectly as the difference between total and planktonic bacterial concentration. Planktonic concentration was defined as the concentration of bacteria that could pass through an 8 μm screen. Total concentration was determined by disaggregating attached bacteria through a dispersion treatment. A randomized complete block design was structured to test for the effects of filtering, two dispersion treatment options, and the presence of soil on concentration. Tween-85 surfactant was selected as the best dispersant for use in further studies. About 78% of bovine <I>E. coli</I> in the laboratory samples were adsorbed/associated with sterile soil particles. Twenty samples of different bacteria-soil ratios were analyzed using this method to develop an isotherm equation describing <I>E. coli</I> partitioning. The <I>E. coli</I> used to inoculate these samples was cultured using a chemostat reactor to control cell growth stage and control variability. A linear isotherm (R²=0.88) was selected to describe this experimental data; however, future studies characterizing the partitioning behavior of <I>E. coli</I> under different environmental conditions are recommended in order to better understand attachment prior to modeling attached and planktonic <I>E. coli</I> separately.en
dc.description.degreeMaster of Scienceen
dc.identifier.otheretd-05062004-110135en
dc.identifier.sourceurlhttp://scholar.lib.vt.edu/theses/available/etd-05062004-110135/en
dc.identifier.urihttp://hdl.handle.net/10919/32255en
dc.publisherVirginia Techen
dc.relation.haspartLAHetd.pdfen
dc.rightsIn Copyrighten
dc.rights.urihttp://rightsstatements.org/vocab/InC/1.0/en
dc.subjectE. colien
dc.subjectsediment attachmenten
dc.subjectTMDLsen
dc.subjectbacteria modelingen
dc.subjectchemostaten
dc.subjectWater qualityen
dc.titlePartitioning Between Soil-Adsorbed and Planktonic Escherichia colien
dc.typeThesisen
thesis.degree.disciplineBiological Systems Engineeringen
thesis.degree.grantorVirginia Polytechnic Institute and State Universityen
thesis.degree.levelmastersen
thesis.degree.nameMaster of Scienceen

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