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au.\*:("LLOYD, Jonathan R")

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Marinobacter santoriniensis sp. nov., an arsenate-respiring and arsenite-oxidizing bacterium isolated from hydrothermal sedimentHANDLEY, Kim M; HERY, Marina; LLOYD, Jonathan R et al.International journal of systematic and evolutionary microbiology (Print). 2009, Vol 59, pp 886-892, issn 1466-5026, 7 p., 4Article

Microbial Reduction of Fe(III) under Alkaline Conditions Relevant to Geological DisposalWILLIAMSON, Adam J; MORRIS, Katherine; SHAW, Sam et al.Applied and environmental microbiology (Print). 2013, Vol 79, Num 11, pp 3320-3326, issn 0099-2240, 7 p.Article

Alkaline Fe(III) reduction by a novel alkali-tolerant Serratia sp. isolated from surface sediments close to Sellafield nuclear facility, UKTHORPE, Clare L; MORRIS, Katherine; BOOTHMAN, Christopher et al.FEMS microbiology letters. 2012, Vol 327, Num 2, pp 87-92, issn 0378-1097, 6 p.Article

Secretion of Flavins by Shewanella Species and Their Role in Extracellular Electron TransferVON CANSTEIN, Harald; OGAWA, Jun; SHIMIZU, Sakayu et al.Applied and environmental microbiology (Print). 2008, Vol 74, Num 3, pp 615-623, issn 0099-2240, 9 p.Article

Biotechnological application of metal-reducing microorganismsLLOYD, Jonathan R; LOVLEY, Derek R; MACASKIE, Lynne E et al.Advances in applied microbiology. 2003, Vol 53, pp 85-128, issn 0065-2164, 44 p.Article

Engineering Biogenic Magnetite for Sustained Cr(VI) Remediation in Flow-through SystemsCREAN, Daniel E; COKER, Victoria S; DER LAAN, Gerrit Van et al.Environmental science & technology. 2012, Vol 46, Num 6, pp 3352-3359, issn 0013-936X, 8 p.Article

Changes in fatty acid composition in degrading algal aggregatesBALZANO, Sergio; PANCOST, Richard D; LLOYD, Jonathan R et al.Marine chemistry (Print). 2011, Vol 124, Num 1-4, pp 2-13, issn 0304-4203, 12 p.Article

Role of Nitrate in Conditioning Aquifer Sediments for Technetium Bioreduction : Biogeochemical redox processesLAW, Gareth T. W; GEISSLER, Andrea; BOOTHMAN, Christopher et al.Environmental science & technology. 2010, Vol 44, Num 1, pp 150-155, issn 0013-936X, 6 p.Article

Molecular and cultivation-dependent analysis of metal-reducing bacteria implicated in arsenic mobilisation in south-east asian aquifersHERY, Marina; GAULT, Andrew G; ROWLAND, Helen A. L et al.Applied geochemistry. 2008, Vol 23, Num 11, pp 3215-3223, issn 0883-2927, 9 p.Conference Paper

Probing the Biogeochemical Behavior of Technetium Using a Novel Nuclear Imaging Approach : Biogeochemical redox processesLEAP, Gavin; MCBETH, Joyce M; LIVENS, Francis R et al.Environmental science & technology. 2010, Vol 44, Num 1, pp 156-162, issn 0013-936X, 7 p.Article

Biogeochemical Controls on the Corrosion of Depleted Uranium Alloy in Subsurface SoilsHANDLEY-SIDHU, Stephanie; WORSFOLD, Paul J; LIVENS, Francis R et al.Environmental science & technology. 2009, Vol 43, Num 16, pp 6177-6182, issn 0013-936X, 6 p.Article

Formation of Nanoscale Elemental Silver Particles via Enzymatic Reduction by Geobacter sulfurreducensLAW, Nicholas; ANSARI, Saadia; LIVENS, Francis R et al.Applied and environmental microbiology (Print). 2008, Vol 74, Num 22, pp 7090-7093, issn 0099-2240, 4 p.Article

Reoxidation behavior of technetium, iron, and sulfur in estuarine sedimentsBURKE, Ian T; BOOTHMAN, Christopher; LLOYD, Jonathan R et al.Environmental science & technology. 2006, Vol 40, Num 11, pp 3529-3535, issn 0013-936X, 7 p.Article

Role of metal-reducing bacteria in arsenic release from Bengal delta sedimentsISLAM, Farhana S; GAULT, Andrew G; BOOTHMAN, Christopher et al.Nature (London). 2004, Vol 430, Num 6995, pp 68-71, issn 0028-0836, 4 p.Article

Microbial reduction of metals and radionuclidesLLOYD, Jonathan R.FEMS microbiology reviews. 2003, Vol 27, Num 2-3, pp 411-425, issn 0168-6445, 15 p.Article

Microbial Reduction of U(VI) under Alkaline Conditions: Implications for Radioactive Waste GeodisposalWILLIAMSON, Adam J; MORRIS, Katherine; LAW, Gareth T. W et al.Environmental science & technology. 2014, Vol 48, Num 22, pp 13549-13556, issn 0013-936X, 8 p.Article

Characterisation of organic matter and microbial communities in contrasting arsenic-rich Holocene and arsenic-poor Pleistocene aquifers, Red River Delta, VietnamAL LAWATI, Wafa M; RIZOULIS, Athanasios; EICHE, Elisabeth et al.Applied geochemistry. 2012, Vol 27, Num 1, pp 315-325, issn 0883-2927, 11 p.Article

Microbial Reduction of Arsenic-Doped Schwertmannite by Geobacter sulf urreducensCUTTING, Richard S; COKER, Victoria S; TELLING, Neil D et al.Environmental science & technology. 2012, Vol 46, Num 22, pp 12591-12599, issn 0013-936X, 9 p.Article

Mineral-organic-microbe interactions: Environmental impacts from molecular to macroscopic scalesVAUGHAN, David J; LLOYD, Jonathan R.Comptes rendus. Géoscience. 2011, Vol 343, Num 2-3, pp 140-159, issn 1631-0713, 20 p.Article

Impact of Silver(I) on the Metabolism of Shewanella oneidensisHUI WANG; LAW, Nicholas; PEARSON, Geraldine et al.Journal of bacteriology. 2010, Vol 192, Num 4, pp 1143-1150, issn 0021-9193, 8 p.Article

Optimizing Cr(VI) and Tc(VII) Remediation through Nanoscale Biomineral EngineeringCUTTING, Richard S; COKER, Victoria S; ARENHOLZ, Elke et al.Environmental science & technology. 2010, Vol 44, Num 7, pp 2577-2584, issn 0013-936X, 8 p.Article

Arsenate detoxification in a Pseudomonad hypertolerant to arsenicPATEL, Prerna C; GOULHEN, Florence; BOOTHMAN, Christopher et al.Archives of microbiology. 2007, Vol 187, Num 3, pp 171-183, issn 0302-8933, 13 p.Article

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