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kw.\*:("Iron reducing bacteria")

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Influence of the Iron-Reducing Bacteria on the Release of Heavy Metals in Anaerobic River SedimentGOUNOU, Catherine; BOUSSERRHINE, Noureddine; VARRAULT, Gilles et al.Water, air and soil pollution. 2010, Vol 212, Num 1-4, pp 123-139, issn 0049-6979, 17 p.Article

Review: microbial mechanisms of accessing insoluble Fe(III) as an energy sourceLUU, Y.-Su; RAMSAY, Juliana A.World journal of microbiology & biotechnology. 2003, Vol 19, Num 2, pp 215-225, issn 0959-3993, 11 p.Article

Effectiveness of anaerobic iron bio-reduction of jarosite and the influence of humic substancesCASTRO, Laura; GARCIA-BALBOA, Camino; GONZALEZ, Felisa et al.Hydrometallurgy (Amsterdam). 2013, Vol 131-132, pp 29-33, issn 0304-386X, 5 p.Article

Metabolic versatility of toluene-degrading, iron-reducing bacteria in tidal flat sediment, characterized by stable isotope probing-based metagenomic analysisKIM, So-Jeong; PARK, Soo-Je; CHA, In-Tae et al.Environmental microbiology (Print). 2014, Vol 16, Num 1, pp 189-204, issn 1462-2912, 16 p.Article

Dissolution of iron from quartz sands by basin bioleaching under static in-situ conditionsSTYRIAKOVA, I; JABLONOVSKA, K; MOCKOVCIAKOVA, A et al.Hydrometallurgy (Amsterdam). 2010, Vol 104, Num 3-4, pp 443-447, issn 0304-386X, 5 p.Article

Study of microbial corrosion behaviour of carbon steel both in alkaline liquid medium and liquid medium with anionsLEE, S; MATSUI, T; YOSHIKAWA, H et al.Corrosion engineering, science and technology. 2014, Vol 49, Num 6, pp 562-566, issn 1478-422X, 5 p.Conference Paper

In situ bioremediation of contaminated soils in uranium depositsGROUDEV, S; SPASOVA, I; NICOLOVA, M et al.Hydrometallurgy (Amsterdam). 2010, Vol 104, Num 3-4, pp 518-523, issn 0304-386X, 6 p.Article

Transformation impacts of dissolved and solid phase Fe(II) on trichloroethylene (TCE) reduction in an iron-reducing bacteria (IRB) mixed column system: A mathematical modelBAE, Yeunook; KIM, Dooil; CHO, Hyun-Hee et al.Water research (Oxford). 2012, Vol 46, Num 19, pp 6391-6398, issn 0043-1354, 8 p.Article

Biological sulfate reduction in the acidogenic phase of anaerobic digestion under dissimilatory Fe (III) ― Reducing conditionsJINGXIN ZHANG; YAOBIN ZHANG; JINGHUI CHANG et al.Water research (Oxford). 2013, Vol 47, Num 6, pp 2033-2040, issn 0043-1354, 8 p.Article

Effect of dissimilatory Fe(III) reducers on bio-reduction and nickel―cobalt recovery from Sukinda chromite-overburdenESTHER, Jacintha; PANDA, Sandeep; BEHERA, Sunil K et al.Bioresource technology. 2013, Vol 146, pp 762-766, issn 0960-8524, 5 p.Article

Light/electricity conversion by defined cocultures of Chlamydomonas and GeobacterNISHIO, Koichi; HASHIMOTO, Kazuhito; WATANABE, Kazuya et al.Journal of bioscience and bioengineering. 2013, Vol 115, Num 4, pp 412-417, issn 1389-1723, 6 p.Article

Experimental and mathematical modeling studies on Cr(VI) reduction by CRB, SRB and IRB, individually and in combinationSOMASUNDARAM, V; PHILIP, Ligy; MURTY BHALLAMUDI, S et al.Journal of hazardous materials (Print). 2009, Vol 172, Num 2-3, pp 606-617, issn 0304-3894, 12 p.Article

In-situ Cr(VI) reduction with electrogenerated hydrogen peroxide driven by iron-reducing bacteriaLIANG LIU; YONG YUAN; LI, Fang-Bai et al.Bioresource technology. 2011, Vol 102, Num 3, pp 2468-2473, issn 0960-8524, 6 p.Article

Comparative evaluation of anaerobic bacterial communities associated with roots of submerged macrophytes growing in marine or brackish water sedimentsKÜSEL, Kirsten; TRINKWALTER, Tanja; DRAKE, Harold L et al.Journal of experimental marine biology and ecology. 2006, Vol 337, Num 1, pp 49-58, issn 0022-0981, 10 p.Article

Role of dissimilatory fermentative iron-reducing bacteria in Fe uptake by common bean (Phaseolus vulgaris L.) plants grown in alkaline soilVALENCIA-CANTERO, Eduardo; HERNANDEZ-CALDERON, Erasto; VELAZQUEZ-BECERRA, Crisanto et al.Plant and soil. 2007, Vol 291, Num 1-2, pp 263-273, issn 0032-079X, 11 p.Article

Iron-reducing bacteria can enhance the activation and turnover of the Fe(III)-fixed phosphorus for mycorrhizal plantsSHIRONG ZHANG; RONGPING WANG; LIN ZHANG et al.Journal of plant nutrition and soil science (1999). 2014, Vol 177, Num 2, pp 208-215, issn 1436-8730, 8 p.Article

Influence of Ferric Iron on Complete Dechlorination of Trichloroethylene (TCE) to Ethene: Fe(III) Reduction Does Not Always Inhibit Complete DechlorinationNA WEI; FINNERAN, Kevin T.Environmental science & technology. 2011, Vol 45, Num 17, pp 7422-7430, issn 0013-936X, 9 p.Article

Influence of ferric oxyhydroxide addition on biomethanation of waste activated sludge in a continuous reactorGAHYUN BAEK; JAAI KIM; CHANGSOO LEE et al.Bioresource technology. 2014, Vol 166, pp 596-601, issn 0960-8524, 6 p.Article

Anaerobic naphthalene degradation by Gram-positive, iron-reducing bacteriaKLEEMANN, Rita; MECKENSTOCK, Rainer U.FEMS microbiology ecology. 2011, Vol 78, Num 3, pp 488-496, issn 0168-6496, 9 p.Article

Mathematical model for predicting microbial reduction and transport of arsenic in groundwater systemsLIM, Mi-Sun; IN WOOK YEO; PRABHAKAR CLEMENT, T et al.Water research (Oxford). 2007, Vol 41, Num 10, pp 2079-2088, issn 0043-1354, 10 p.Article

Water Management Impacts on Arsenic Speciation and Iron-Reducing Bacteria in Contrasting Rice-Rhizosphere CompartmentsSOMENAHALLY, Anil C; HOLLISTER, Emily B; WENGUI YAN et al.Environmental science & technology. 2011, Vol 45, Num 19, pp 8328-8335, issn 0013-936X, 8 p.Article

Removal of heavy metals and arsenic from contaminated soils using bioremediation and chelant extraction techniquesVAXEVANIDOU, Katerina; PAPASSIOPI, Nymphodora; PASPALIARIS, Ioannis et al.Chemosphere (Oxford). 2008, Vol 70, Num 8, pp 1329-1337, issn 0045-6535, 9 p.Article

Laboratory scale column studies on transport and biotransformation of Cr(VI) through porous media in presence of CRB, SRB and IRBSOMASUNDARAM, V; PHILIP, Ligy; MURTY BHALLAMUDI, S et al.Chemical engineering journal (1996). 2011, Vol 171, Num 2, pp 572-581, issn 1385-8947, 10 p.Article

Microorganisms in heat supply systems and internal corrosion of steel pipelinesROZANOVA, E. P; DUBININA, G. A; LEBEDEVA, E. V et al.Microbiology (New York, NY). 2003, Vol 72, Num 2, pp 179-186, issn 0026-2617, 8 p.Article

The effect of ammonium chloride and urea application on soil bacterial communities closely related to the reductive transformation of pentachlorophenolYU, Huan-Yun; WANG, Yong-Kui; CHEN, Peng-Cheng et al.Journal of hazardous materials (Print). 2014, Vol 272, pp 10-19, issn 0304-3894, 10 p.Article

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