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Fakultät für Chemie
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Universitätsprofessor/in em./i.R., Umweltmikrobiologie und Biotechnologie
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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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Chalcopyrite bioleaching by an enriched microbial community in acidic artificial seawaterIn: Journal of Central South University: Science & Technology of Mining and Metallurgy , Jg. 32 2025, Nr. 5, S. 1802 – 1821
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Improvement of photocatalytic antibacterial action of Mn, Sv-co-doped ZnIn₂S₄ prepared by a novel Ov-rich α-MnO₂ decomposition approachIn: Journal of Materials Chemistry A: Materials for Energy and Sustainability 2025 , in press
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Microbial Community Dynamics and Elemental Speciation in Antimony-Contaminated Mining AreasIn: Journal of Sustainable Metallurgy 2025 , in press
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Research progress and prospects in antifouling performance of photocatalytic sterilization : A reviewIn: Journal of Materials Science & Technology (JMST) , Jg. 208 2025, S. 189 – 201
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Silver loaded APTES-boron nitride with enhanced visible light photocatalytic properties for sewage degradationIn: Materials Today Chemistry , Jg. 45 2025, 102689
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Application of nanomaterials in antifouling: A reviewIn: Nano Materials Science , Jg. 6 2024, Nr. 6, S. 672 – 700DOI (Open Access)
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Corrosion of Q235 steel affected by Pseudodesulfovibrio cashew differed with electron acceptors : 电子受体对 Pseudodesulfovibrio cashew 作用下Q235钢腐蚀的影响In: Journal of Central South University: Science & Technology of Mining and Metallurgy , Jg. 31 2024, Nr. 10, S. 3352 – 3368
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Effect of organic carbon sources on the anodic corrosion of magnesium AZ31B by sulfate-reducing prokaryoteIn: Journal of Central South University: Science & Technology of Mining and Metallurgy , Jg. 31 2024, Nr. 10, S. 3369 – 3381
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Effect of yeast extract on microbiologically influenced corrosion of X70 pipeline steel by Desulfovibrio bizertensis SY-1In: Bioelectrochemistry: official journal of the Bioelectrochemical Society , Jg. 157 2024, 108650
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Investigation of mortar corrosion by an acidophilic sulfur-oxidizing microorganism A. thiooxidansIn: Journal of Central South University: Science & Technology of Mining and Metallurgy , Jg. 31 2024, Nr. 10, S. 3423 – 3434
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Microbial corrosion of metallic biomaterials in the oral environmentIn: Acta Biomaterialia , Jg. 184 2024, S. 22 – 36
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Passivation of metal sulfides by a marine bacterium for acid mine drainage controlIn: Journal of Hazardous Materials , Jg. 480 2024, 136065
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The Microbiologically Influenced Corrosion and Protection of Pipelines : A Detailed ReviewIn: Materials , Jg. 17 2024, Nr. 20, 4996DOI (Open Access)
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Cold-resistant performance and the promoted development of functional community with flexible metabolic patterns in a Biofilm Bio-Nutrient Removal (BBNR) system amended with supplementary carbon source for phosphorus recoveryIn: Environmental Research , Jg. 227 2023, 115807
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Comprehensive Review on the Use of Biocides in Microbiologically Influenced CorrosionIn: Microorganisms , Jg. 11 2023, Nr. 9, 2194DOI (Open Access)
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Review on Microbially Influenced Concrete CorrosionIn: Microorganisms , Jg. 11 2023, Nr. 8, 2076DOI (Open Access)
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Bioleaching of Chalcopyrite Waste Rock in the Presence of the Copper Solvent Extractant LIX984NIn: Frontiers in Microbiology , Jg. 13 2022, 820052DOI (Open Access)
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Correction to : Progress in bioleaching: fundamentals and mechanisms of microbial metal sulfide oxidation – part AIn: Applied Microbiology and Biotechnology , Jg. 106 2022, Nr. 21, S. 7375DOI (Open Access)
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Corrosion Behavior of AZ31B Magnesium Alloy Anode by Sulfate-Reducing Prokaryotes in the Tidal Flat Mud with Different Water ContentsIn: Lubricants , Jg. 10 2022, Nr. 11, 293DOI (Open Access)
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Corrosion of an AZ31B Magnesium Alloy by Sulfate-Reducing Prokaryotes in a Mudflat EnvironmentIn: Microorganisms , Jg. 10 2022, Nr. 5, 839DOI (Open Access)
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Effects of Inorganic Metabolites of Sulphate-Reducing Bacteria on the Corrosion of AZ31B and AZ63B Magnesium Alloy in 3.5 wt.% NaCl SolutionIn: Materials , Jg. 15 2022, Nr. 6, 2212DOI (Open Access)
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Extracellular Polymeric Substances and Biocorrosion/Biofouling : Recent Advances and Future PerspectivesIn: International Journal of Molecular Sciences (IJMS) , Jg. 23 2022, Nr. 10, 5566DOI (Open Access)
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Progress in bioleaching: fundamentals and mechanisms of microbial metal sulfide oxidation – part AIn: Applied Microbiology and Biotechnology , Jg. 106 2022, Nr. 21, S. 6933 – 6952DOI (Open Access)
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Some Aspects of Industrial Heap Bioleaching Technology : From Basics to PracticeIn: Mineral Processing and Extractive Metallurgy Review , Jg. 43 2022, Nr. 4, S. 510 – 528
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Dissolved organic matter byproducts from combined low-level alkaline and mechanical treatment of sludge : Species, and their bioavailabilityIn: Water Science and Technology , Jg. 83 2021, Nr. 6, S. 1446 – 1458DOI (Open Access)
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Improvement surfactin production by substitution of promoters in bacillus subtilis TD7In: Applied Environmental Biotechnology (AEB) , Jg. 6 2021, Nr. 1, S. 31 – 41DOI (Open Access)
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A bifunctional electroactive ti₄o₇-based membrane system for highly efficient ammonia decontaminationIn: Catalysts , Jg. 10 2020, Nr. 4, 383DOI (Open Access)
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Bioelectrochemical methane production from CO₂ by Methanosarcina barkeri via direct and H₂-mediated indirect electron transferIn: Energy: The international journal , Jg. 210 2020, S. 118445
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Co-metabolic degradation of refractory dye : A metagenomic and metaproteomic studyIn: Environmental Pollution , Jg. 256 2020, S. 113456
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Correction to : Microbial synergy and stoichiometry in heap biooxidation of low-grade porphyry arsenic-bearing gold oreIn: Extremophiles , Jg. 24 2020, Nr. 3, S. 365DOI (Open Access)
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Effect of graphite on copper bioleaching fromwaste printed circuit boardsIn: Minerals , Jg. 10 2020, Nr. 1DOI (Open Access)
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Erratum: Correction for Bellenberg et al., "Automated Microscopic Analysis of Metal Sulfide Colonization by Acidophilic Microorganisms"In: Applied and Environmental Microbiology , Jg. 86 2020, Nr. 3, S. e02702 – 19DOI (Open Access)
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Interactions Between Cells of Sulfobacillus thermosulfidooxidans and Leptospirillum ferriphilum During Pyrite BioleachingIn: Frontiers in Microbiology , Jg. 11 2020, S. 44DOI, Online Volltext (Open Access)
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Interfacial alteration of pyrite caused by bioleachingIn: Hydrometallurgy , Jg. 195 2020, S. 105356
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Methanogenic biodegradation of C₁₃ and C₁₄ n-alkanes activated by addition to fumarateIn: International Biodeterioration & Biodegradation , Jg. 153 2020, S. 104994
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Microbial synergy and stoichiometry in heap biooxidation of low-grade porphyry arsenic-bearing gold oreIn: Extremophiles , Jg. 24 2020, S. 355 – 364
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Newly isolated Acidithiobacillus sp. Ksh From Kashen Copper Ore : Peculiarities of EPS and Colloidal ExopolysaccharideIn: Frontiers in Microbiology , Jg. 11 2020, S. 1802DOI, Online Volltext (Open Access)
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Reverse engineering directed gene regulatory networks from transcriptomics and proteomics data of biomining bacterial communities with approximate Bayesian computation and steady-state signalling simulationsIn: BMC Bioinformatics , Jg. 21 2020, Nr. 1DOI (Open Access)
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Role of humic acid in bioleaching of copper from waste computer motherboardsIn: Hydrometallurgy , Jg. 197 2020, S. 105437
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Systems biology of acidophile biofilms for efficient metal extractionIn: Scientific Data , Jg. 7 2020, Nr. 1, 215DOI (Open Access)
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Adhesion to mineral surfaces by cells of leptospirillum, acidithiobacillus and sulfobacillus from armenian sulfide oresIn: Minerals , Jg. 9 2019, Nr. 2, S. 69DOI (Open Access)
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Biofilm dynamics and EPS production of a thermoacidophilic bioleaching archaeonIn: New Biotechnology , Jg. 51 2019, S. 21 – 30DOI (Open Access)
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Deep neural networks outperform human expert's capacity in characterizing bioleaching bacterial biofilm compositionIn: Biotechnology Reports , Jg. 22 2019, S. e00321DOI (Open Access)
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Direct microbial transformation of carbon dioxide to value-added chemicals : A comprehensive analysis and application potentialsIn: Bioresource Technology , Jg. 288 2019, S. 121401
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Durability and performance of loofah sponge as carrier for wastewater treatment with high ammoniumIn: Water Environment Research , Jg. 91 2019, Nr. 7, S. 581 – 587
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Effects of deep geological environments for nuclear waste disposal on the hydrogen entry into titaniumIn: International Journal of Hydrogen Energy 2019
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Engineering Reusable Sponge of Cobalt Heterostructures for Highly Efficient Organic Pollutants Degradation via Peroxymonosulfate ActivationIn: ChemNanoMat , Jg. 5 2019, Nr. 4, S. 547 – 557
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Extracellular Polymeric Substances from Geobacter sulfurreducens Biofilms in Microbial Fuel CellsIn: ACS Applied Materials & Interfaces , Jg. 11 2019, Nr. 9, S. 8961 – 8968
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Fructose as an additional co-metabolite promotes refractory dye degradation : Performance and mechanismIn: Bioresource Technology , Jg. 280 2019, S. 430 – 440
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Insight Into Interactions of Thermoacidophilic Archaea With Elemental Sulfur : Biofilm Dynamics and EPS AnalysisIn: Frontiers in Microbiology , Jg. 10 2019, S. 896DOI, Online Volltext (Open Access)
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Investigation on adhesion of Sulfobacillus thermosulfidooxidans via atomic force microscopy equipped with mineral probesIn: Colloids and Surfaces B: Biointerfaces , Jg. 173 2019, S. 639 – 646
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Methanogenic degradation of long n-alkanes requires fumarate-dependent activationIn: Applied and Environmental Microbiology , Jg. 85 2019, Nr. 16DOI (Open Access)
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Proteomics reveal enhanced oxidative stress responses and metabolic adaptation in acidithiobacillus ferrooxidans biofilm cells on pyriteIn: Frontiers in Microbiology , Jg. 10 2019, S. 592DOI (Open Access)
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Anaerobic biodegradation and decolorization of a refractory acid dye by a forward osmosis membrane bioreactorIn: Environmental Science: Water Research & Technology , Jg. 4 2018, Nr. 2, S. 272 – 280
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Automated Microscopic Analysis of Metal Sulfide Colonization by Acidophilic MicroorganismsIn: Applied and Environmental Microbiology , Jg. 84 2018, Nr. 20DOI (Open Access)
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Comparative analysis of attachment to chalcopyrite of three mesophilic iron and/or sulfur-oxidizing acidophilesIn: Minerals , Jg. 8 2018, Nr. 9, S. 406DOI (Open Access)
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Insights into the biology of acidophilic members of the Acidiferrobacteraceae family derived from comparative genomic analysesIn: Research in Microbiology 2018DOI (Open Access)
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Microbial uniqueness of architecture modified loofah sponge as biological filler for efficient nitrogen removalIn: Bioresource Technology Reports , Jg. 3 2018, S. 95 – 101
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Multi-omics Reveals the Lifestyle of the Acidophilic, Mineral-Oxidizing Model Species Leptospirillum ferriphilumTIn: Applied and Environmental Microbiology , Jg. 84 2018, Nr. 3, S. e02091 – 17DOI (Open Access)
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Recent advances in anaerobic biological processes for textile printing and dyeing wastewater treatment : a mini-reviewIn: World Journal of Microbiology and Biotechnology , Jg. 34 2018, Nr. 11, 165
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Semicontinuous biooxidation of high-sulfur concentrates : Relationship between volume or mass dissolution rate and pulp densityIn: Mining, Metallurgy & Exploration (MME) , Jg. 35 2018, Nr. 4, S. 202 – 214
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Weak iron oxidation by Sulfobacillus thermosulfidooxidans maintains a favorable redox potential for chalcopyrite bioleachingIn: Frontiers in Microbiology , Jg. 9 2018, S. 3059DOI (Open Access)
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Bacterial and archaeal community distribution and stabilization of anaerobic sludge in a strengthen circulation anaerobic (SCA) reactor for municipal wastewater treatmentIn: Bioresource Technology , Jg. 244 2017, S. 750 – 758
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Lignite ash : Waste material or potential resource ; Investigation of metal recovery and utilization optionsIn: Hydrometallurgy , Jg. 168 2017, S. 141 – 152
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Mechanical and chemical studies on EPS from Sulfobacillus thermosulfidooxidans: from planktonic to biofilm cellsIn: Colloids and Surfaces B: Biointerfaces , Jg. 153 2017, S. 34 – 40
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Quantification of cell-substratum interactions by atomic force microscopyIn: Colloids and Surfaces B: Biointerfaces , Jg. 159 2017, S. 639 – 643
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Biofilm formation and interspecies interactions in mixed cultures of thermo-acidophilic archaea Acidianus spp. and Sulfolobus metallicusIn: Research in Microbiology , Jg. 167 2016, Nr. 7, S. 604 – 612
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Effect of Extracellular Polymeric Substances on Surface Properties and Attachment Behavior of Acidithiobacillus ferrooxidansIn: Minerals , Jg. 6 2016, Nr. 4, S. 100DOI (Open Access)
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Enhancement of biofilm formation on pyrite by Sulfobacillus thermosulfidooxidansIn: Minerals , Jg. 6 2016, Nr. 3, S. 71DOI (Open Access)
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Fungal degradation of elemental carbon in Carbonaceous gold oreIn: Hydrometallurgy , Jg. 160 2016, S. 90 – 97
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Influence of Sulfobacillus thermosulfidooxidans on Initial Attachment and Pyrite Leaching by Thermoacidophilic Archaeon Acidianus sp. DSM 29099In: Minerals , Jg. 6 2016, Nr. 3, S. 76DOI (Open Access)
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Proteins dominate in the surface layers formed on materials exposed to extracellular polymeric substances from bacterial culturesIn: Biofouling: The Journal of Bioadhesion and Biofilm Research , Jg. 32 2016, Nr. 1, S. 95 – 108
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Erratum to: Visualization and analysis of EPS glycoconjugates of the thermoacidophilic archaeon Sulfolobus metallicusIn: Applied Microbiology and Biotechnology , Jg. 99 2015, Nr. 17, S. 7357
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Impact of entrained and dissolved organic chemicals associated with copper solvent extraction on Acidithiobacillus ferrooxidansIn: Hydrometallurgy , Jg. 157 2015, S. 207 – 213
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Influence of extracellular polymeric substances (EPS) from Pseudomonas NCIMB 2021 on the corrosion behaviour of 70Cu-30Ni alloy in seawaterIn: Journal of Electroanalytical Chemistry , Jg. 737 2015, S. 184 – 197DOI (Open Access)
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Manipulation of pyrite colonization and leaching by iron-oxidizing Acidithiobacillus speciesIn: Applied Microbiology and Biotechnology , Jg. 99 2015, Nr. 3, S. 1435 – 1449
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Study and assessment of microbial communities in natural and commercial bioleaching systemsIn: Minerals Engineering , Jg. 81 2015, S. 167 – 172
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Use of lectins to in situ visualize glycoconjugates of extracellular polymeric substances in acidophilic archaeal biofilmsIn: Microbial Biotechnology , Jg. 8 2015, Nr. 3, S. 448 – 461DOI (Open Access)
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Visualization and analysis of EPS glycoconjugates of the thermoacidophilic archaeon Sulfolobus metallicusIn: Applied Microbiology and Biotechnology , Jg. 99 2015, Nr. 17, S. 7343 – 7356
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Aeromonas hydrophila produces conductive nanowiresIn: Research in Microbiology , Jg. 165 2014, Nr. 9, S. 794 – 802
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Biofilm formation, communication and interactions of leaching bacteria during colonization of pyrite and sulfur surfacesIn: Research in Microbiology , Jg. 165 2014, Nr. 9, S. 773 – 781
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Characterization of exopolymeric substances (EPS) produced by Aeromonas hydrophila under reducing conditionsIn: Biofouling: The Journal of Bioadhesion and Biofilm Research , Jg. 30 2014, Nr. 4, S. 501 – 511
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Colonization and biofilm formation of the extremely acidophilic archaeon Ferroplasma acidiphilumIn: Hydrometallurgy 2014, Nr. 150, S. 245 – 252
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Impact of Desulfovibrio alaskensis biofilms on corrosion behaviour of carbon steel in marine environmentIn: Bioelectrochemistry: official journal of the Bioelectrochemical Society , Jg. 97 2014, S. 52 – 60
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Isolation and characterization of a novel Acidithiobacillus ferrivorans strain from the Chilean Altiplano : Attachment and biofilm formation on pyrite at low temperatureIn: Research in Microbiology , Jg. 165 2014, Nr. 9, S. 782 – 793
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Methanobacterium movilense sp. nov., a hydrogenotrophic, secondary-alcohol-utilizing methanogen from the anoxic sediment of a subsurface lakeIn: International Journal of Systematic and Evolutionary Microbiology (IJSEM) , Jg. 64 2014, Nr. PART 2, S. 522 – 527
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Methanosarcina spelaei sp. nov., a methanogenic archaeon isolated from a floating biofilm of a subsurface sulphurous lakeIn: International Journal of Systematic and Evolutionary Microbiology (IJSEM) , Jg. 64 2014, S. 3478 – 3484
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Polystyrene films as barrier layers for corrosion protection of copper and copper alloysIn: Bioelectrochemistry: official journal of the Bioelectrochemical Society , Jg. 97 2014, S. 7 – 14
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AHL signaling molecules with a large acyl chain enhance biofilm formation on sulfur and metal sulfides by the bioleaching bacterium Acidithiobacillus ferrooxidansIn: Applied Microbiology and Biotechnology , Jg. 97 2013, Nr. 8, S. 3729 – 3737
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Biofilm formation and corrosion resistance of Ni/SiC nanocomposite layersIn: International Journal of Materials Research , Jg. 104 2013, Nr. 5, S. 489 – 497
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Investigation and in situ visualisation of interfacial interactions of thermophilic microorganisms with metal-sulphides in a simulated heap environmentIn: Minerals Engineering , Jg. 48 2013, S. 100 – 107
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Progress in bioleaching : Fundamentals and mechanisms of bacterial metal sulfide oxidation-part AIn: Applied Microbiology and Biotechnology , Jg. 97 2013, Nr. 17, S. 7529 – 7541
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Shotgun proteomics study of early biofilm formation process of Acidithiobacillus ferrooxidans ATCC 23270 on pyriteIn: Proteomics , Jg. 13 2013, Nr. 7, S. 1133 – 1144
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Adhesion forces between cells of Acidithiobacillus ferrooxidans, Acidithiobacillus thiooxidans or Leptospirillum ferrooxidans and chalcopyriteIn: Colloids and Surfaces B: Biointerfaces , Jg. 94 2012, S. 95 – 100
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Visualization of capsular polysaccharide induction in Acidithiobacillus ferrooxidansIn: Hydrometallurgy , Jg. 129-130 2012, S. 82 – 89
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Some quantitative data on bacterial attachment to pyriteIn: Minerals Engineering , Jg. 24 2011, Nr. 11, S. 1132 – 1138
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AFM & EFM study on attachment of acidophilic leaching organismsIn: Hydrometallurgy , Jg. 104 2010, Nr. 3-4, 18th International Biohydrometallurgy Symposium, IBS2009, Bariloche-Argentina, 13-17 September 2009, S. 370 – 375
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Visualization of initial attachment of bioleaching bacteria using combined atomic force and epifluorescence microscopyIn: Minerals Engineering , Jg. 23 2010, Nr. 6, S. 532 – 535
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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 – 132
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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 – 407
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Long-term evaluation of acid rock drainage mitigation measures in large lysimetersIn: Journal of Geochemical Exploration , Jg. 92 2007, Nr. 2-3, S. 205 – 211
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Oxidation of Inorganic Sulfur Compounds in Acidophilic ProkaryotesIn: Engineering in Life Sciences , Jg. 7 2007, Nr. 4, S. 301 – 309
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Adhesion to metal sulfide surfaces by cells of Acidithiobacillus ferrooxidans, Acidithiobacillus thiooxidans and Leptospirillum ferrooxidansIn: Hydrometallurgy , Jg. 83 2006, Nr. 1-4, S. 245 – 254
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Extracellular polymeric substances mediate bioleaching/biocorrosion via interfacial processes involving iron(III) ions and acidophilic bacteriaIn: Research in Microbiology , Jg. 157 2006, Nr. 1, S. 49 – 56
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Influence of growth media on the sensitivity of Staphylococcus aureus and Pseudomonas aeruginosa to cationic biocidesIn: International Journal of Hygiene and Environmental Health , Jg. 209 2006, Nr. 1, S. 89 – 95
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Microbially Influenced Corrosion of Steel in Aqueous EnvironmentsIn: Reviews in Environmental Science and BioTechnology , Jg. 2 2004, Nr. 2-4, S. 169 – 176
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Tetrathionate Disproportionation by Thiomonas intermedia K12In: Engineering in Life Sciences , Jg. 4 2004, Nr. 1, S. 25 – 30
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Bioleaching : a result of interfacial processes caused by extracellular polymeric substances (EPS)In: Hydrometallurgy , Jg. 71 2003, Nr. 1-2, S. 83 – 88
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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 – 248
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Preliminary Evidence for a Sulphur Cycle in Movile Cave, RomaniaIn: Acta Biotechnologica , Jg. 23 2003, Nr. 1, S. 101 – 107
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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 – 1709DOI (Open Access)
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A Simple Method for Investigations on the Chemotaxis of A. ferrooxidans and D. vulgarisIn: Acta Biotechnologica , Jg. 22 2002, Nr. 3-4, S. 391 – 399
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(Bio) chemistry of bacterial leaching-direct vs. indirect bioleaching.In: Hydrometallurgy , Jg. 59 2001, Nr. 2-3, S. 159 – 175
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Abatement of acid rock drainage - results of a six-year-project in the framework of a German-Romanian scientific cooperationIn: Process Metallurgy , Jg. 11B 2001, S. 297 – 305
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Bioleaching - a result of interfacial processes caused by extracellular polymeric substances (EPS)In: Process Metallurgy , Jg. 11 2001, S. 191 – 197
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The EPS of Acidithiobacillus ferrooxidans : a model for structure-function relationships of attached bacteria and their physiologyIn: Water Science and Technology , Jg. 43 2001, Nr. 6, S. 159 – 167
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Evaluation of biocide efficacy by microcalorimetric determination of microbial activity in biofilmsIn: Investigacion y Tecnica del Papel , Jg. 37 2000, Nr. 146, S. 624 – 638
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Large-scale experiments for microbiological evaluation of measures for safeguarding sulfidic mine wasteIn: Waste Management , Jg. 21 2000, Nr. 2, S. 139 – 146
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Mechanisms of microbial deteriorationIn: Investigacion y Tecnica del Papel , Jg. 37 2000, Nr. 146, S. 507 – 519
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Microbiological Pyrite Oxidation in a Mine Tailings Heap and Its Relevance to the Death of VegetationIn: Geomicrobiology Journal , Jg. 17 2000, Nr. 2, S. 151 – 162
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Bacterial leaching of metal sulfides proceeds by two indirect mechanisms via thiosulfate or via polysulfides and sulfurIn: Applied and Environmental Microbiology , Jg. 65 1999, Nr. 1, S. 319 – 321
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Direct versus indirect bioleachingIn: Process Metallurgy , Jg. 9A 1999, S. 27 – 49
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Evaluation and quantification of bacterial attachment, microbial activity, and biocide efficacy by microcalorimetryIn: Methods in Enzymology , Jg. 310 1999, Nr. Biofilms, S. 361 – 374
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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 – 110
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Large-scale experiments for safe-guarding mine waste and preventing acid rock drainageIn: Process Metallurgy , Jg. 9 1999, S. 749 – 758
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Microcalorimetric determination of bioleaching activity and temperature dependenceIn: Process Metallurgy , Jg. 9 1999, S. 551 – 557
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Polythionate metabolism in Thiomonas intermedia K12In: Process Metallurgy , Jg. 9A 1999, Nr. Biohydrometallurgy and the Environment Toward the Mining of the 21st Century, Pt. A, S. 787 – 797
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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 – 85
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Evaluation of biocide efficacy by microcalorimetric determination of microbial activity in biofilmsIn: Journal of Microbiological Methods , Jg. 33 1998, Nr. 3, S. 227 – 235
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Evaluation of the efficiency of measures for sulfidic mine waste mitigationIn: Applied Microbiology and Biotechnology , Jg. 49 1998, Nr. 6, S. 698 – 701
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Importance of Extracellular Polymeric Substances from Thiobacillus ferrooxidans for BioleachingIn: Applied and Environmental Microbiology , Jg. 64 1998, Nr. 7, S. 2743 – 2747
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Towards a Novel Bioleaching MechanismIn: Mineral Processing and Extractive Metallurgy Review , Jg. 19 1998, Nr. 1, S. 97 – 106DOI (Open Access)
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Microbial mechanisms of deterioration of inorganic substrates : a general mechanistic overviewIn: International Biodeterioration & Biodegradation , Jg. 40 1997, Nr. 2-4, S. 183 – 190
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Quantification of metal sulfide oxidation by microcalorimetry.In: DGMK-Tagungsbericht , Jg. 3 1997, S. 1659 – 1662
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Sulfur chemistry in metal sulfide oxidationIn: DGMK-Tagungsbericht , Jg. 9704 1997, Nr. Proceedings ICCS '97, Volume 3, S. 1643 – 1646
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Impact of microbial diversity and sulfur chemistry on safeguarding sulfidic mine wasteIn: Minerals Engineering , Jg. 9 1996, Nr. 10, S. 1069 – 1079
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Influence of oxygenation on the strength of MIC on metalsIn: Dechema-Monographien , Jg. 133 1996, Nr. Biodeterioration and Biodegradation, S. 325 – 331
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Microbiological investigations of low-water corrosion on steel piling structuresIn: Dechema-Monographien , Jg. 133 1996, S. 101 – 106
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Mikrobielle Werkstoffzerstörung — Biofilm und Biofouling : Simulation mikrobiell beeinflußter Metallkorrosion (MIC) zur Prüfung von GegenmaßnahmenIn: Materials and Corrosion , Jg. 47 1996, Nr. 9, S. 486 – 494
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Sulfur chemistry in bacterial leaching of pyriteIn: Applied and Environmental Microbiology , Jg. 62 1996, Nr. 9, S. 3424 – 3431
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Microbial Diversity in Uranium Mine Waste HeapsIn: Applied and Environmental Microbiology , Jg. 61 1995, Nr. 8, S. 2930 – 2935
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Sulfur chemistry, biofilm, and the (in)direct attack mechanism : a critical evaluation of bacterial leachingIn: Applied Microbiology and Biotechnology , Jg. 43 1995, Nr. 6, S. 961 – 966
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Mikrobielle Werkstoffzerstörung – Grundlagen : Mikrobielle SchädigungsmechanismenIn: Werkstoffe und Korrosion , Jg. 45 1994, Nr. 1, S. 10 – 16
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Controlled microbiological in-situ stope leaching of a sulfidic oreIn: Applied Microbiology and Biotechnology , Jg. 40 1993, Nr. 2-3, S. 421 – 426
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Estimations on the degradability of ores and bacterial leaching activity using short-time microcalorimetric testsIn: FEMS Microbiology Reviews , Jg. 11 1993, Nr. 1-3, S. 79 – 86DOI (Open Access)
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The microbiology of masonry biodeteriorationIn: Journal of Applied Bacteriology , Jg. 74 1993, Nr. 5, S. 503 – 514
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Acid-stable cytochromes in ferrous ion oxidizing cell-free preparations from Thiobacillus ferrooxidansIn: FEMS Microbiology Letters , Jg. 92 1992, Nr. 1, S. 83 – 87
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Enhanced leaching of a sulfide ore by biological acidificationIn: Biorecovery , Jg. 2 1992, Nr. 2, S. 69 – 81
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Evaluation of Leptospirillum ferrooxidans for leachingIn: Applied and Environmental Microbiology , Jg. 58 1992, Nr. 1, S. 85 – 92
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Physiological characteristics of thiobacillus ferrooxidans and leptospirillum ferrooxidans and physicochemical factors influence microbial metal leachingIn: Geomicrobiology Journal , Jg. 10 1992, Nr. 3-4, S. 193 – 206
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Biodeterioration of ceramic materials by biogenic acidsIn: International Biodeterioration , Jg. 27 1991, Nr. 2, S. 175 – 183
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