Evaluation of data from the literature on the transport and survival of Escherichia coli and thermotolerant coliforms in aquifers under saturated conditions.
暂无分享,去创建一个
[1] J. Schijven,et al. Transport of E. coli in columns of geochemically heterogeneous sediment. , 2005, Water research.
[2] M. Elimelech,et al. Relevance of electrokinetic theory for "soft" particles to bacterial cells: implications for bacterial adhesion. , 2005, Langmuir : the ACS journal of surfaces and colloids.
[3] M. Elimelech,et al. Influence of growth phase on bacterial deposition : Interaction mechanisms in packed-bed column and radial stagnation point flow systems , 2005 .
[4] Nathalie Tufenkji,et al. Spatial distributions of Cryptosporidium oocysts in porous media: evidence for dual mode deposition. , 2005, Environmental science & technology.
[5] S. Bradford,et al. Straining, attachment, and detachment of cryptosporidium oocysts in saturated porous media. , 2005, Journal of environmental quality.
[6] J. Schijven,et al. Determining straining of Escherichia coli from breakthrough curves. , 2005, Journal of contaminant hydrology.
[7] M. Elimelech,et al. Comment on breakdown of colloid filtration theory : Role of the secondary energy minimum and surface charge heterogeneities. Commentary , 2005 .
[8] M. Elimelech,et al. Deviation from the classical colloid filtration theory in the presence of repulsive DLVO interactions. , 2004, Langmuir : the ACS journal of surfaces and colloids.
[9] Timothy Scheibe,et al. Apparent decreases in colloid deposition rate coefficients with distance of transport under unfavorable deposition conditions: a general phenomenon. , 2004, Environmental science & technology.
[10] M. Elimelech,et al. Transport of Cryptosporidium oocysts in porous media: role of straining and physicochemical filtration. , 2004, Environmental science & technology.
[11] Menachem Elimelech,et al. Role of Cell Surface Lipopolysaccharides in Escherichia coli K12 adhesion and transport. , 2004, Langmuir : the ACS journal of surfaces and colloids.
[12] I. Arana,et al. Relationships between Escherichia coli cells and the surrounding medium during survival processes , 2004, Antonie van Leeuwenhoek.
[13] J. Schijven,et al. Elimination of viruses, bacteria and protozoan oocysts by slow sand filtration. , 2004, Water science and technology : a journal of the International Association on Water Pollution Research.
[14] Charles P Gerba,et al. The persistence and removal of enteric pathogens in constructed wetlands. , 2004, Water research.
[15] Tor Kristian Stevik,et al. Retention and removal of pathogenic bacteria in wastewater percolating through porous media: a review. , 2004, Water research.
[16] M. Elimelech,et al. Bacterial adhesion and transport in porous media: role of the secondary energy minimum. , 2004, Environmental science & technology.
[17] Harry L. T. Mobley,et al. Pathogenic Escherichia coli , 2004, Nature Reviews Microbiology.
[18] Nathalie Tufenkji,et al. Correlation equation for predicting single-collector efficiency in physicochemical filtration in saturated porous media. , 2004, Environmental science & technology.
[19] S. Yates,et al. Modeling colloid attachment, straining, and exclusion in saturated porous media. , 2003, Environmental science & technology.
[20] M. V. Genuchten,et al. Review and comparison of models for describing non-equilibrium and preferential flow and transport in the vadose zone , 2003 .
[21] J. Ehrhardt,et al. Effects of different crystal faces on the surface charge of colloidal goethite (α-FeOOH) particles: an experimental and modeling study , 2003 .
[22] M. Elimelech,et al. Interpreting deposition patterns of microbial particles in laboratory-scale column experiments. , 2003, Environmental science & technology.
[23] Jirka Simunek,et al. Physical factors affecting the transport and fate of colloids in saturated porous media , 2002 .
[24] K. Killham,et al. Survival of Escherichia coli O157:H7 in private drinking water wells: influences of protozoan grazing and elevated copper concentrations. , 2002, FEMS microbiology letters.
[25] S. Bhattacharjee,et al. Virus transport in physically and geochemically heterogeneous subsurface porous media. , 2002, Journal of contaminant hydrology.
[26] J. Foppen. Impact of high-strength wastewater infiltration on groundwater quality and drinking water supply: the case of Sana'a, Yemen , 2002 .
[27] Paula Teixeira,et al. Survival characteristics of pathogens inoculated into bottled mineral water , 2001 .
[28] N. Sun,et al. A novel two-dimensional model for colloid transport in physically and geochemically heterogeneous porous media. , 2001, Journal of contaminant hydrology.
[29] J. Schijven. Virus removal from groundwater by soil passage: Modeling, field and laboratory experiments , 2001 .
[30] S. Grant,et al. Pathogen filtration, heterogeneity, and the potable reuse of wastewater. , 2001, Environmental science & technology.
[31] Bhattacharjee,et al. Coupled Influence of Colloidal and Hydrodynamic Interactions on the RSA Dynamic Blocking Function for Particle Deposition onto Packed Spherical Collectors. , 2000, Journal of colloid and interface science.
[32] M. Elimelech,et al. Relative Insignificance of Mineral Grain Zeta Potential to Colloid Transport in Geochemically Heterogeneous Porous Media , 2000 .
[33] Timothy R. Ginn,et al. Modeling microbial processes in porous media , 2000 .
[34] Bruce A. Macler,et al. Current knowledge on groundwater microbial pathogens and their control , 2000 .
[35] C. Whitfield,et al. Distribution of Core Oligosaccharide Types in Lipopolysaccharides from Escherichia coli , 2000, Infection and Immunity.
[36] M. Noonan,et al. Transport and attenuation of bacteria and bacteriophages in an alluvial gravel aquifer , 2000 .
[37] Paul P. Wang,et al. MT3DMS: A Modular Three-Dimensional Multispecies Transport Model for Simulation of Advection, Dispersion, and Chemical Reactions of Contaminants in Groundwater Systems; Documentation and User's Guide , 1999 .
[38] M. Kerr,et al. Survival of Escherichia coli O157:H7 in bottled natural mineral water , 1999, Journal of applied microbiology.
[39] Petter D. Jenssen,et al. The influence of physical and chemical factors on the transport of E. coli through biological filters for wastewater purification , 1999 .
[40] P. Maloszewski,et al. Effects of Velocity on the Transport of Two Bacteria Through Saturated Sand , 1999 .
[41] M. Doyle,et al. Survival of enterohemorrhagic Escherichia coli O157:H7 in water. , 1998, Journal of food protection.
[42] A. Zehnder,et al. Population Heterogeneity Affects Transport of Bacteria through Sand Columns at Low Flow Rates , 1998 .
[43] L. Pang,et al. Transport of bacteria and bacteriophages in irrigated effluent into and through an alluvial gravel aquifer , 1997 .
[44] P. Maloszewski,et al. The Role of Sorption in the Transport of Klebsiella oxytoca Through Saturated Silica Sand , 1997 .
[45] R. Harvey. Microorganisms as tracers in groundwater injection and recovery experiments: a review. , 1997, FEMS microbiology reviews.
[46] I. Barcina,et al. Survival of allochthonous bacteria in aquatic systems: a biological approach , 1997 .
[47] G. Bogosian,et al. Death of the Escherichia coli K-12 strain W3110 in soil and water , 1996, Applied and environmental microbiology.
[48] M. Elimelech,et al. Colloid Transport in Geochemically Heterogeneous Porous Media: Modeling and Measurements , 1996 .
[49] E. Bouwer,et al. Bacterial Deposition in Porous Media Related to the Clean Bed Collision Efficiency and to Substratum Blocking by Attached Cells , 1996 .
[50] Menachem Elimelech,et al. Colloid mobilization and transport in groundwater , 1996 .
[51] Seunghyun Kim,et al. A Kinetic Approach to Modeling Mobile Bacteria-Facilitated Groundwater Contaminant Transport , 1996 .
[52] Charles R. O'Melia,et al. Clarification of Clean-Bed Filtration Models , 1995 .
[53] M. Elimelech,et al. Colloid deposition dynamics in flow-through porous media: role of electrolyte concentration. , 1995, Environmental science & technology.
[54] B. Logan,et al. Modeling Bacterial Detachment During Transport Through Porous Media as a Residence‐Time‐Dependent Process , 1995 .
[55] Menachem Elimelech,et al. Dynamics of Colloid Deposition in Porous Media: Blocking Based on Random Sequential Adsorption , 1995 .
[56] R. Bales,et al. Effect of temperature-controlled motility on transport of bacteria and microspheres through saturated sediment , 1995 .
[57] Carl G. Enfield,et al. A kinetic model for cell density dependent bacterial transport in porous media , 1994 .
[58] Philippe C. Baveye,et al. Transport of bacteria in an aquifer sand: Experiments and model simulations , 1994 .
[59] J. Iriberri,et al. Differential elimination of enteric bacteria by protists in a freshwater system. , 1994, The Journal of applied bacteriology.
[60] M. D. da Costa,et al. Survival of allochthonous bacteria in still mineral water bottled in polyvinyl chloride (PVC) and glass. , 1994, The Journal of applied bacteriology.
[61] R. E. Sjogren. Prolonged survival of an environmental Escherchia coli in laboratory soil microcosms , 1994 .
[62] A. Nasser,et al. Comparative Survival of E. Coli, F+Bacteriophages, HAV and Poliovirus 1 in Wastewater and Groundwater , 1993 .
[63] E. Rice,et al. Survival of Escherichia coli O157: H7 in drinking water associated with a waterborne disease outbreak of hemorrhagic colitis , 1992 .
[64] R. Harvey,et al. Laboratory investigations on the role of sediment surface and groundwater chemistry in transport of bacteria through a contaminated sandy aquifer , 1992 .
[65] Edward J. Bouwer,et al. Application of clean-bed filtration theory to bacterial deposition in porous media , 1992 .
[66] J. M. González,et al. Characterization of culturability, protistan grazing, and death of enteric bacteria in aquatic ecosystems , 1992, Applied and environmental microbiology.
[67] Göran Bengtsson,et al. Dispersal dynamics of groundwater bacteria , 1991, Microbial Ecology.
[68] P. Martikainen,et al. Survival of Escherichia coli and Campylobacter jejuni in untreated and filtered lake water. , 1991, The Journal of applied bacteriology.
[69] D. Evans,et al. Surface characteristics and adhesion of Escherichia coli and Staphylococcus epidermidis. , 1991, The Journal of applied bacteriology.
[70] T. Gutberlet,et al. Molecular modelling of bacterial deep rough mutant lipopolysaccharide of Escherichia coli. , 1991, European journal of biochemistry.
[71] G. Hornberger,et al. The influence of mineralogy and solution chemistry on the attachment of bacteria to representative aquifer materials , 1990 .
[72] W. Chao,et al. Survival of genetically engineered Escherichia coli in natural soil and river water. , 1990, The Journal of applied bacteriology.
[73] R. Y. Morita,et al. Plasmid expression and maintenance during long-term starvation-survival of bacteria in well water , 1989, Applied and environmental microbiology.
[74] D. R. Champ,et al. Bacterial Transport in Fractured Rock – A Field-Scale Tracer Test at the Chalk River Nuclear Laboratories , 1988 .
[75] Asaf Pekdeger,et al. Persistence and transport of bacteria and viruses in groundwater — a conceptual evaluation , 1988 .
[76] M. V. van Loosdrecht,et al. Electrophoretic mobility and hydrophobicity as a measured to predict the initial steps of bacterial adhesion , 1987, Applied and environmental microbiology.
[77] M. V. van Loosdrecht,et al. The role of bacterial cell wall hydrophobicity in adhesion , 1987, Applied and environmental microbiology.
[78] Y. Noda,et al. Determination of hydrophobicity on bacterial surfaces by nonionic surfactants , 1986, Journal of bacteriology.
[79] M. Yavuz Corapcioglu,et al. Microbial transport in soils and groundwater: A numerical model , 1985 .
[80] Mukul M. Sharma,et al. Reversible and irreversible surface charge modification of bacteria for facilitating transport through porous media , 1985 .
[81] S. Kjelleberg,et al. Starvation-Induced Effects on Bacterial Surface Characteristics , 1984, Applied and environmental microbiology.
[82] M. Yavuz Corapcioglu,et al. Transport and fate of microorganisms in porous media: A theoretical investigation , 1984 .
[83] G. Bitton,et al. Survival of Pathogenic and Indicator Organisms in Ground Water , 1983 .
[84] M. R. Overcash,et al. Behavior and Transport of Microbial Pathogens and Indicator Organisms in Soils Treated with Organic Wastes , 1981 .
[85] C. Hagedorn,et al. Quantitatively tracing bacterial transport in saturated soil systems , 1979 .
[86] G. Kling,et al. Transport of Antibiotic-resistant Escherichia coli Through Western Oregon Hillslope Soils Under Conditions of Saturated Flow 1 , 1978 .
[87] R. Tate,et al. Cultural and Environmental Factors Affecting the Longevity of Escherichia coli in Histosols , 1978, Applied and environmental microbiology.
[88] T. Viraraghavan. Travel of microorganisms from a septic tile , 1978, Water, Air, and Soil Pollution.
[89] Charles A. Sorber,et al. Virus and Bacteria Removal from Wastewater by Rapid Infiltration Through Soil , 1977, Applied and environmental microbiology.
[90] Chi Tien,et al. Trajectory analysis of deep‐bed filtration with the sphere‐in‐cell porous media model , 1976 .
[91] G. McFeters,et al. Comparative survival of indicator bacteria and enteric pathogens in well water. , 1974, Applied microbiology.
[92] G A McFeters,et al. Survival of coliform bacteria in natural waters: field and laboratory studies with membrane-filter chambers. , 1972, Applied microbiology.
[93] Charles R. O'Melia,et al. Water and waste water filtration. Concepts and applications , 1971 .
[94] J. Herzig,et al. Flow of Suspensions through Porous Media—Application to Deep Filtration , 1970 .
[95] John C. Romero,et al. The Movement of Bacteria and Viruses Through Porous Media , 1970 .
[96] R. Neihof. Microelectrophoresis apparatus employing palladium electrodes. , 1969, Journal of colloid and interface science.
[97] E. Geldreich,et al. Seasonal Variations in Survival of Indicator Bacteria in Soil and Their Contribution to Storm-water Pollution. , 1967, Applied microbiology.
[98] G. E. Agar,et al. The zero point of charge of calcite , 1967 .
[99] W. Hall. An Analysis of Sand Filtration , 1957 .
[100] R. G. Butler,et al. Underground Movement of Bacterial and Chemical Pollutants , 1954 .
[101] T. R. Bhaskaran,et al. Investigations of ground-water pollution; ground-water in West Bengal, India. , 1945, The Indian journal of medical research.
[102] Dyer Br,et al. Investigations of ground-water pollution; soil characteristic in West Bengal, India, at the site of ground-water pollution investigations. , 1945 .
[103] E. L. Caldwell,et al. Pollution Flow from Pit Latrines when an Impervious Stratum Closely Underlies the Flow , 1937 .
[104] Tomihisa Iwasaki,et al. Some Notes on Sand Filtration , 1937 .
[105] M. Goltz,et al. Estimation of septic tank setback distances based on transport of E. coli and F-RNA phages. , 2004, Environment international.
[106] M. W. Hahn,et al. Deposition and reentrainment of Brownian particles in porous media under unfavorable chemical conditions: some concepts and applications. , 2004, Environmental science & technology.
[107] Paul R. Hunter,et al. Safe Drinking Water: An ongoing challenge , 2003 .
[108] P. White,et al. Groundwaters of New Zealand. , 2001 .
[109] P. White,et al. Microbial contamination of New Zealand's aquifers. , 2001 .
[110] A. Mills,et al. Transport of Escherichia coli in sand columns with constant and changing water contents. , 2001, Journal of environmental quality.
[111] M. Elimelech,et al. Bacteriophage PRD1 and Silica Colloid Transport and Recovery in an Iron Oxide-Coated Sand Aquifer , 1999 .
[112] M. Sussman. Escherichia coli: mechanisms of virulence. , 1997 .
[113] C. Appelo,et al. Geochemistry, groundwater and pollution , 1993 .
[114] R. Harvey,et al. Transport of pathogens through soils and aquifers , 1992 .
[115] Stephen P. Garabedian,et al. Use of colloid filtration theory in modeling movement of bacteria through a contaminated sandy aquifer , 1991 .
[116] K. Gundermann,et al. [Comparative studies of the filtration behavior of bacteria and organic particles in porous groundwater conductors. Fundamentals and methods]. , 1991, Zentralblatt fur Hygiene und Umweltmedizin = International journal of hygiene and environmental medicine.
[117] F. G. Bell,et al. Ground engineer's reference book , 1987 .
[118] G. Matthess,et al. Theoretical background, hydrogeology, and practice of groundwater protection zones , 1985 .
[119] G. W. Thomas,et al. Transport of Escherichia coli through intact and disturbed soil columns , 1985 .
[120] Stuart R. Crane,et al. Bacterial pollution of groundwater: A review , 1984 .
[121] G. Matthess,et al. The properties of groundwater , 1982 .
[122] C. Gerba,et al. Survival of enteric viruses and indicator bacteria in groundwater , 1982 .
[123] A. Pekdeger,et al. Concepts of a survival and transport model of pathogenic bacteria and viruses in groundwater , 1981 .
[124] C. Hagedorn,et al. The Potential for Ground Water Contamination from Septic Effluents , 1981 .
[125] S. Buol. Soil Genesis and Classification , 1980 .
[126] C. Hagedorn,et al. Transport of resistance-labeled Escherichia coli strains through a transition between two soils in a topographic sequence. , 1980 .
[127] P. Mccarty,et al. Chemistry for environmental engineering , 1978 .
[128] R. B. Reneau. Influence of Artificial Drainage on Penetration of Coliform Bacteria from Septic Tank Effluents into Wet Tile Drained Soils , 1978 .
[129] G. H. Simonson,et al. Survival and Movement of Fecal Indicator Bacteria in Soil under Conditions of Saturated Flow 1 , 1978 .
[130] H. König,et al. Grundlagen und Methoden , 1976 .
[131] B. Merkli. Untersuchungen über Mechanismen und Kinetik der Elimination von Bakterien und Viren im Grundwasser , 1975 .
[132] R. B. Reneau,et al. Movement of Coliform Bacteria from Septic Tank Effluent through Selected Coastal Plain Soils of Virginia , 1975 .
[133] Y. Kott,et al. EFFECT OF DISSOLVED SALTS ON THE FILTRATION OF COLIFORM BACTERIA IN SAND DUNES , 1973 .
[134] Kudryavtseva Bm. An experimental approach to the establishment of zones of hygienic protection of underground water sources on the basis sanitary-bacteriological indices. , 1972 .
[135] James Am. The electrochemistry of the bacterial surface. , 1957 .
[136] T. R. Bhaskaran,et al. Investigations of Ground-Water Pollution. Part I. Determination of the Direction and the Velocity of Flow of Ground Water. , 1943 .