Thilo Hofmann
Thilo Hofmann
Professor of Environmental Geosciences, University of Vienna
Verified email at - Homepage
Cited by
Cited by
Nanoparticles: structure, properties, preparation and behaviour in environmental media
P Christian, F Von der Kammer, M Baalousha, T Hofmann
Ecotoxicology 17 (5), 326-343, 2008
Nanopesticide research: current trends and future priorities
M Kah, T Hofmann
Environment international 63, 224-235, 2014
Nanopesticides: state of knowledge, environmental fate, and exposure modeling
M Kah, S Beulke, K Tiede, T Hofmann
Critical Reviews in Environmental Science and Technology, 2013
Nanostructured TiO2: Transport Behavior and Effects on Aquatic Microbial Communities under Environmental Conditions
TJ Battin, F Kammer, A Weilhartner, S Ottofuelling, T Hofmann
Environmental science & technology 43 (21), 8098-8104, 2009
Algal testing of titanium dioxide nanoparticles—testing considerations, inhibitory effects and modification of cadmium bioavailability
NB Hartmann, F Von der Kammer, T Hofmann, M Baalousha, ...
Toxicology 269 (2-3), 190-197, 2010
Release of TiO2 Nanoparticles from Sunscreens into Surface Waters: A One-Year Survey at the Old Danube Recreational Lake
AP Gondikas, F Kammer, RB Reed, S Wagner, JF Ranville, T Hofmann
Environmental science & technology 48 (10), 5415-5422, 2014
Separation and characterization of nanoparticles in complex food and environmental samples by field-flow fractionation
F Von der Kammer, S Legros, T Hofmann, EH Larsen, K Loeschner
TrAC Trends in Analytical Chemistry 30 (3), 425-436, 2011
Characterization and source identification of polycyclic aromatic hydrocarbons (PAHs) in river bank soils
C Pies, B Hoffmann, J Petrowsky, Y Yang, TA Ternes, T Hofmann
Chemosphere 72 (10), 1594-1601, 2008
Native polycyclic aromatic hydrocarbons (PAH) in coals–a hardly recognized source of environmental contamination
C Achten, T Hofmann
Science of the total Environment 407 (8), 2461-2473, 2009
Commercial titanium dioxide nanoparticles in both natural and synthetic water: comprehensive multidimensional testing and prediction of aggregation behavior
S Ottofuelling, F Von Der Kammer, T Hofmann
Environmental science & technology 45 (23), 10045-10052, 2011
Spot the difference: engineered and natural nanoparticles in the environment—release, behavior, and fate
S Wagner, A Gondikas, E Neubauer, T Hofmann, F von der Kammer
Angewandte Chemie International Edition 53 (46), 12398-12419, 2014
Estimating the relevance of engineered carbonaceous nanoparticle facilitated transport of hydrophobic organic contaminants in porous media
T Hofmann, F Von der Kammer
Environmental pollution 157 (4), 1117-1126, 2009
Sorption of non-polar organic compounds by micro-sized plastic particles in aqueous solution
T Hüffer, T Hofmann
Environmental pollution 214, 194-201, 2016
Measuring and modeling adsorption of PAHs to carbon nanotubes over a six order of magnitude wide concentration range
M Kah, X Zhang, MTO Jonker, T Hofmann
Environmental science & technology 45 (14), 6011-6017, 2011
Influence of surface functionalization and particle size on the aggregation kinetics of engineered nanoparticles
J Liu, S Legros, G Ma, JGC Veinot, F Von der Kammer, T Hofmann
Chemosphere 87 (8), 918-924, 2012
Assessment of the physico-chemical behavior of titanium dioxide nanoparticles in aquatic environments using multi-dimensional parameter testing
F von der Kammer, S Ottofuelling, T Hofmann
Environmental Pollution 158 (12), 3472-3481, 2010
Using FlFFF and aTEM to determine trace metal–nanoparticle associations in riverbed sediment
KL Plathe, F Von der Kammer, M Hassellöv, J Moore, M Murayama, ...
Environmental Chemistry 7 (1), 82-93, 2010
Effect of pH and stream order on iron and arsenic speciation in boreal catchments
E Neubauer, SJ Köhler, F von der Kammer, H Laudon, T Hofmann
Environmental science & technology 47 (13), 7120-7128, 2013
Nanosized iron oxide colloids strongly enhance microbial iron reduction
J Bosch, K Heister, T Hofmann, RU Meckenstock
Appl. Environ. Microbiol. 76 (1), 184-189, 2010
Sorption of ionizable and ionic organic compounds to biochar, activated carbon and other carbonaceous materials
M Kah, G Sigmund, F Xiao, T Hofmann
Water research 124, 673-692, 2017
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