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Die folgenden Publikationen sind in der Online-Universitätsbibliographie der Universität Duisburg-Essen verzeichnet. Weitere Informationen finden Sie gegebenenfalls auch auf den persönlichen Webseiten der Person.
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Degradation of fuel oxygenates and their main intermediates by Aquincola tertiaricarbonis L108In: Microbiology Jg. 154 (2008) S. 1414 - 1421
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Novel combination of atomic force microscopy and epifluorescence microscopy for visualization of leaching bacteriaIn: Applied Environmental Microbiology Jg. 74 (2008) Nr. 2, S. 410 - 415
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Properties of thiols required for sulfur dioxygenase activity at acidic pHIn: Journal of Sulfur Chemistry Jg. 29 (2008) Nr. 3-4, S. 293 - 302
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Visualization of Acidithiobacillus ferrooxidans biofilms on pyrite by atomic force and epifluorescence microscopy under various experimental conditionsIn: Hydrometallurgy Jg. 94 (2008) Nr. 1-4, S. 127 - 132Online Volltext: dx.doi.org/
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Aquincola tertiaricarbonis gen. nov., sp. nov., a tertiary butyl moiety-degrading bacteriumIn: International Journal of Systematic and Evolutionary Microbiology (IJSEM) Jg. 57 (2007) Nr. 6, S. 1295 - 1303Online Volltext: dx.doi.org/ (Open Access)
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Carbon conversion efficiency and limits of productive bacterial degradation of methyl tert-butyl ether and related compoundsIn: Applied and Environmental Microbiology Jg. 73 (2007) Nr. 6, S. 1783 - 1791
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Detection of Sulfur Microparticles in Bacterial Cultures by Flow CytometryIn: Engineering in Life Sciences Jg. 7 (2007) Nr. 4, Special Issue:Wolfgang Babel – Dedicated to his 70th Birthday, S. 403 - 407Online Volltext: dx.doi.org/
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Oxidation of Inorganic Sulfur Compounds in Acidophilic ProkaryotesIn: Engineering in Life Sciences Jg. 7 (2007) Nr. 4, S. 301 - 309Online Volltext: dx.doi.org/
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Variations in 13C/12C and D/H enrichment factors of aerobic bacterial fuel oxygenate degradationIn: Environmental Science & Technology Jg. 41 (2007) Nr. 6, S. 2036 - 2043
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The Alkyl tert-Butyl Ether Intermediate 2-Hydroxyisobutyrate Is Degraded via a Novel Cobalamin-Dependent Mutase PathwayIn: Applied and Environmental Microbiology Jg. 72 (2006) Nr. 6, S. 4128 - 4135Online Volltext: dx.doi.org/ (Open Access)
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Bioleaching review part A : Progress in bioleaching: fundamentals and mechanisms of bacterial metal sulfide oxidationIn: Applied Microbiology and Biotechnology Jg. 63 (2003) Nr. 3, S. 239 - 248Online Volltext: dx.doi.org/
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Preliminary Evidence for a Sulphur Cycle in Movile Cave, RomaniaIn: Acta Biotechnologica Jg. 23 (2003) Nr. 1, S. 101 - 107Online Volltext: dx.doi.org/
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The sulfane sulfur of persulfides is the actual substrate of the sulfur-oxidizing enzymes from Acidithiobacillus and Acidiphilium spp.In: Microbiology Jg. 149 (2003) Nr. 7, S. 1699 - 1709Online Volltext: dx.doi.org/ (Open Access)
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Intermediary sulfur compounds in pyrite oxidation: implications for bioleaching and biodepyritization of coalIn: Applied Microbiology and Biotechnology Jg. 52 (1999) Nr. 1, S. 104 - 110Online Volltext: dx.doi.org/
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Microcalorimetric determination of bioleaching activity and temperature dependenceIn: Process Metallurgy Jg. 9 (1999) S. 551 - 557Online Volltext: dx.doi.org/
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Determination of reaction energy values for biological pyrite oxidation by calorimetryIn: Thermochimica Acta Jg. 309 (1998) Nr. 1-2, S. 79 - 85Online Volltext: dx.doi.org/
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Quantification of metal sulfide oxidation by microcalorimetry.In: DGMK-Tagungsbericht Jg. 3 (1997) S. 1659 - 1662
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Mechanisms and biochemical fundamentals of bacterial metal sulfide oxidationIn: Microbial processing of metal sulfides / Donati, Edgardo; Sand, Wolfgang (Hrsg.) 2007, S. 35 - 58
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Bacterial metal sulfide degradation : pathways, inhibition measures, and monitoringIn: ICARD 2000: Proceedings from the International Conference on Acid Rock Drainage / 5th International Conference on Acid Rock Drainage, Denver, CO, United States, May 21-24, 2000 2000, S. 75 - 82