Publications
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Adaptation of nitrifying microbial biomass to nickel in batch incubations.
Yeung CH,
Francis CA, Criddle CS.
Appl Microbiol Biotechnol.
2013;
97
(2):
847-57
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Magnetically ultraresponsive nanoscavengers for next-generation water purification systems.
Zhang M,
Xie X, Tang M, Criddle CS, Cui Y, Wang SX.
Nat Commun.
2013:
4
1866
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Stoichiometry and kinetics of the PHB-producing Type II methanotrophs Methylosinus trichosporium OB3b and Methylocystis parvus OBBP.
Rostkowski KH,
Pfluger AR, Criddle CS.
Bioresour Technol.
2013:
132
71-7
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Cyclic, alternating methane and nitrogen limitation increases PHB production in a methanotrophic community.
Pieja AJ,
Sundstrom ER, Criddle CS.
Bioresour Technol.
2012:
107
385-92
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Distribution and selection of poly-3-hydroxybutyrate production capacity in methanotrophic proteobacteria.
Pieja AJ,
Rostkowski KH, Criddle CS.
Microb Ecol.
2011;
62
(3):
564-73
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Fine-scale bacterial community dynamics and the taxa-time relationship within a full-scale activated sludge bioreactor.
Wells GF,
Park HD, Eggleston B, Francis CA, Criddle CS.
Water Res.
2011;
45
(17):
5476-88
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Poly-3-hydroxybutyrate metabolism in the type II methanotroph Methylocystis parvus OBBP.
Pieja AJ,
Sundstrom ER, Criddle CS.
Appl Environ Microbiol.
2011;
77
(17):
6012-9
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Reduction of uranium(VI) by soluble iron(II) conforms with thermodynamic predictions.
Du X,
Boonchayaanant B, Wu WM, Fendorf S, Bargar J, Criddle CS.
Environ Sci Technol.
2011;
45
(11):
4718-25
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Three-dimensional carbon nanotube-textile anode for high-performance microbial fuel cells.
Xie X,
Hu L, Pasta M, Wells GF, Kong D, Criddle CS, Cui Y.
Nano Lett.
2011;
11
(1):
291-6
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Can microbially-generated hydrogen sulfide account for the rates of U(VI) reduction by a sulfate-reducing bacterium?
Boonchayaanant B,
Gu B, Wang W, Ortiz ME, Criddle CS.
Biodegradation.
2010;
21
(1):
81-95
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Effects of nitrate on the stability of uranium in a bioreduced region of the subsurface.
Wu WM,
Carley J, Green SJ, Luo J, Kelly SD, Van Nostrand J, Lowe K, Mehlhorn T, Carroll S, Boonchayanant B, Löfller FE, Watson D, Kemner KM, Zhou J, Kitanidis PK, Kostka JE, Jardine PM, Criddle CS.
Environ Sci Technol.
2010;
44
(13):
5104-11
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Significant association between sulfate-reducing bacteria and uranium-reducing microbial communities as revealed by a combined massively parallel sequencing-indicator species approach.
Cardenas E,
Wu WM, Leigh MB, Carley J, Carroll S, Gentry T, Luo J, Watson D, Gu B, Ginder-Vogel M, Kitanidis PK, Jardine PM, Zhou J, Criddle CS, Marsh TL, Tiedje JM.
Appl Environ Microbiol.
2010;
76
(20):
6778-86
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Uranium transformations in static microcosms.
Kelly SD,
Wu WM, Yang F, Criddle CS, Marsh TL, O'Loughlin EJ, Ravel B, Watson D, Jardine PM, Kemner KM.
Environ Sci Technol.
2010;
44
(1):
236-42
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Ammonia-oxidizing communities in a highly aerated full-scale activated sludge bioreactor: betaproteobacterial dynamics and low relative abundance of Crenarchaea.
Wells GF,
Park HD, Yeung CH, Eggleston B, Francis CA, Criddle CS.
Environ Microbiol.
2009;
11
(9):
2310-28
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Simple menaquinones reduce carbon tetrachloride and iron (III).
Fu QS,
Boonchayaanant B, Tang W, Trost BM, Criddle CS.
Biodegradation.
2009;
20
(1):
109-16
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Uranium reduction and resistance to reoxidation under iron-reducing and sulfate-reducing conditions.
Boonchayaanant B,
Nayak D, Du X, Criddle CS.
Water Res.
2009;
43
(18):
4652-64
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Aerobic biotransformation and fate of N-ethyl perfluorooctane sulfonamidoethanol (N-EtFOSE) in activated sludge.
Rhoads KR,
Janssen EM, Luthy RG, Criddle CS.
Environ Sci Technol.
2008;
42
(8):
2873-8
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Growth and cometabolic reduction kinetics of a uranium- and sulfate-reducing Desulfovibrio/Clostridia mixed culture: Temperature effects.
Boonchayaanant B,
Kitanidis PK, Criddle CS.
Biotechnol Bioeng.
2008;
99
(5):
1107-19
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Microbial communities in contaminated sediments, associated with bioremediation of uranium to submicromolar levels.
Cardenas E,
Wu WM, Leigh MB, Carley J, Carroll S, Gentry T, Luo J, Watson D, Gu B, Ginder-Vogel M, Kitanidis PK, Jardine PM, Zhou J, Criddle CS, Marsh TL, Tiedje JM.
Appl Environ Microbiol.
2008;
74
(12):
3718-29
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Correlation of patterns of denitrification instability in replicated bioreactor communities with shifts in the relative abundance and the denitrification patterns of specific populations.
Gentile ME,
Lynn Nyman J, Criddle CS.
ISME J.
2007;
1
(8):
714-28
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Detection and quantification of Geobacter lovleyi strain SZ: implications for bioremediation at tetrachloroethene- and uranium-impacted sites.
Amos BK,
Sung Y, Fletcher KE, Gentry TJ, Wu WM, Criddle CS, Zhou J, Löffler FE.
Appl Environ Microbiol.
2007;
73
(21):
6898-904
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Effect of flux (transmembrane pressure) and membrane properties on fouling and rejection of reverse osmosis and nanofiltration membranes treating perfluorooctane sulfonate containing wastewater.
Tang CY,
Fu QS, Criddle CS, Leckie JO.
Environ Sci Technol.
2007;
41
(6):
2008-14
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Gene capture and random amplification for quantitative recovery of homologous genes.
Crosby LD,
Criddle CS.
Mol Cell Probes.
2007;
21
(2):
140-7
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In situ bioreduction of uranium (VI) to submicromolar levels and reoxidation by dissolved oxygen.
Wu WM,
Carley J, Luo J, Ginder-Vogel MA, Cardenas E, Leigh MB, Hwang C, Kelly SD, Ruan C, Wu L, Van Nostrand J, Gentry T, Lowe K, Mehlhorn T, Carroll S, Luo W, Fields MW, Gu B, Watson D, Kemner KM, Marsh T, Tiedje J, Zhou J, Fendorf S, Kitanidis PK, Jardine PM, Criddle CS.
Environ Sci Technol.
2007;
41
(16):
5716-23
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Inhibition of a U(VI)- and sulfate-reducing consortia by U(VI).
Nyman JL,
Wu HI, Gentile ME, Kitanidis PK, Criddle CS.
Environ Sci Technol.
2007;
41
(18):
6528-33
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Modeling in-situ uranium(VI) bioreduction by sulfate-reducing bacteria.
Luo J,
Weber FA, Cirpka OA, Wu WM, Nyman JL, Carley J, Jardine PM, Criddle CS, Kitanidis PK.
J Contam Hydrol.
2007;
92
(1-2):
129-48
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A nested-cell approach for in situ remediation.
Luo J,
Wu W, Fienen MN, Jardine PM, Mehlhorn TL, Watson DB, Cirpka OA, Criddle CS, Kitanidis PK.
Ground Water.
2006 Mar-Apr;
44
(2):
266-74
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A parametric transfer function methodology for analyzing reactive transport in nonuniform flow.
Luo J,
Cirpka OA, Fienen MN, Wu WM, Mehlhorn TL, Carley J, Jardine PM, Criddle CS, Kitanidis PK.
J Contam Hydrol.
2006;
83
(1-2):
27-41
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Heterogeneous response to biostimulation for U(VI) reduction in replicated sediment microcosms.
Nyman JL,
Marsh TL, Ginder-Vogel MA, Gentile M, Fendorf S, Criddle C.
Biodegradation.
2006;
17
(4):
303-16
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Occurrence of ammonia-oxidizing archaea in wastewater treatment plant bioreactors.
Park HD,
Wells GF, Bae H, Criddle CS, Francis CA.
Appl Environ Microbiol.
2006;
72
(8):
5643-7
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Pilot-scale in situ bioremedation of uranium in a highly contaminated aquifer. 2. Reduction of u(VI) and geochemical control of u(VI) bioavailability.
Wu WM,
Carley J, Gentry T, Ginder-Vogel MA, Fienen M, Mehlhorn T, Yan H, Caroll S, Pace MN, Nyman J, Luo J, Gentile ME, Fields MW, Hickey RF, Gu B, Watson D, Cirpka OA, Zhou J, Fendorf S, Kitanidis PK, Jardine PM, Criddle CS.
Environ Sci Technol.
2006;
40
(12):
3986-95
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Pilot-scale in situ bioremediation of uranium in a highly contaminated aquifer. 1. Conditioning of a treatment zone.
Wu WM,
Carley J, Fienen M, Mehlhorn T, Lowe K, Nyman J, Luo J, Gentile ME, Rajan R, Wagner D, Hickey RF, Gu B, Watson D, Cirpka OA, Kitanidis PK, Jardine PM, Criddle CS.
Environ Sci Technol.
2006;
40
(12):
3978-85
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Stability in a denitrifying fluidized bed reactor.
Gentile M,
Yan T, Tiquia SM, Fields MW, Nyman J, Zhou J, Criddle CS.
Microb Ecol.
2006;
52
(2):
311-21
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Thermodynamic constraints on the oxidation of biogenic UO2 by Fe(III) (Hydr)oxides.
Ginder-Vogel M,
Criddle CS, Fendorf S.
Environ Sci Technol.
2006;
40
(11):
3544-50
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Use of reverse osmosis membranes to remove perfluorooctane sulfonate (PFOS) from semiconductor wastewater.
Tang CY,
Fu QS, Robertson AP, Criddle CS, Leckie JO.
Environ Sci Technol.
2006;
40
(23):
7343-9
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Mass-transfer limitations for nitrate removal in a uranium-contaminated aquifer.
Luo J,
Cirpka OA, Wu W, Fienen MN, Jardine PM, Mehlhorn TL, Watson DB, Criddle CS, Kitanidis PK.
Environ Sci Technol.
2005;
39
(21):
8453-9
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Quantitative determination of perfluorochemicals in sediments and domestic sludge.
Higgins CP,
Field JA, Criddle CS, Luthy RG.
Environ Sci Technol.
2005;
39
(11):
3946-56
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A derivative of the menaquinone precursor 1,4-dihydroxy-2-naphthoate is involved in the reductive transformation of carbon tetrachloride by aerobically grown Shewanella oneidensis MR-1.
Ward MJ,
Fu QS, Rhoads KR, Yeung CH, Spormann AM, Criddle CS.
Appl Microbiol Biotechnol.
2004;
63
(5):
571-7
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Cometabolism of Cr(VI) by Shewanella oneidensis MR-1 produces cell-associated reduced chromium and inhibits growth.
Middleton SS,
Latmani RB, Mackey MR, Ellisman MH, Tebo BM, Criddle CS.
Biotechnol Bioeng.
2003;
83
(6):
627-37
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Understanding bias in microbial community analysis techniques due to rrn operon copy number heterogeneity.
Crosby LD,
Criddle CS.
Biotechniques.
2003;
34
(4):
790-4, 796, 798 passim
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Reductive dehalogenation of carbon tetrachloride by Escherichia coli K-12.
Criddle CS,
DeWitt JT, McCarty PL.
Appl Environ Microbiol.
1990;
56
(11):
3247-54
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Transformation of carbon tetrachloride by Pseudomonas sp. strain KC under denitrification conditions.
Criddle CS,
DeWitt JT, Grbić-Galić D, McCarty PL.
Appl Environ Microbiol.
1990;
56
(11):
3240-6