Suchbegriffe: CADMIUM, . Treffer: 32
** Vanderschueren, R; Doevenspeck, J; Helsen, F; Mounicou, S; Santner, J; Delcour, JA; Chavez, E; Smolders, E Cadmium migration from nib to testa during cacao fermentation is driven by nib acidification.
** Smolders, E; Wagner, S; Prohaska, T; Irrgeher, J; Santner, J Sub-millimeter distribution of labile trace element fluxes in the rhizosphere explains differential effects of soil liming on cadmium and zinc uptake in maize.
** Zaccaron, S; Henniges, U; Potthast, A; Rosenau, T How alkaline solvents in viscosity measurements affect data for oxidatively damaged celluloses. Cuoxam and Cadoxen.
** DeNardis, NI; Ilic, JP; Ruzic, I; Novosel, N; Radic, TM; Weber, A; Kasum, D; Pavlinska, Z; Balogh, RK; Hajdu, B; Chorvatova, AM; Gyurcsik, B Algal cell response to laboratory-induced cadmium stress: a multimethod approach.
EUR BIOPHYS J BIOPHY. 2019; 48(3): 231-248. WoS PubMed FullText FullText_BOKU** Rechberger, MV; Kloss, S; Wang, SL; Lehmann, J; Rennhofer, H; Ottner, F; Wriessnig, K; Daudin, G; Lichtenegger, H; Soja, G; Zehetner, F; Enhanced Cu and Cd sorption after soil aging of woodchip-derived biochar: What were the driving factors?.
Chemosphere. 2019; 216:463-471 WoS PubMed FullText FullText_BOKU** Kohanová, J; Martinka, M; Vaculík, M; White, PJ; Hauser, MT; Lux, A; Root hair abundance impacts cadmium accumulation in Arabidopsis thaliana shoots..
** Watanabe, D; Losak, T; Vollmann, J FROM PROTEOMICS TO IONOMICS: SOYBEAN GENETIC IMPROVEMENT FOR BETTER FOOD SAFETY.
** Weissengruber, L; Moller, K; Puschenreiter, M; Friedel, JK Long-term soil accumulation of potentially toxic elements and selected organic pollutants through application of recycled phosphorus fertilizers for organic farming conditions.
** Zeiner, M; Juranović Cindrić, I; Harmful Elements (Al, Cd, Cr, Ni, and Pb) in Wild Berries and Fruits Collected in Croatia..
** Richter, J; Ploderer, M; Mongelard, G; Gutierrez, L; Hauser, MT Role of CrRLK1L Cell Wall Sensors HERCULES1 and 2, THESEUS1, and FERONIA in Growth Adaptation Triggered by Heavy Metals and Trace Elements.
** Vanessa, AL; Angeles, PF; Sergio, R; Beatriz, RG; Rolf, H; Markus, P; Susan, KP Evaluating phytoextraction efficiency of two high-biomass crops after soil amendment and inoculation with rhizobacterial strains.
ENVIRON SCI POLLUT R. 2017; 24(8): 7591-7606. WoS PubMed FullText FullText_BOKU** Meija, J; Coplen, TB; Berglund, M; Brand, WA; De Bievre, P; Groning, M; Holden, NE; Irrgeher, J; Loss, RD; Walczyk, T; Prohaska, T Atomic weights of the elements 2013 (IUPAC Technical Report).
PURE APPL CHEM. 2016; 88(3): 265-291. WoS FullText FullText_BOKU** Vollmann, J; Losak, T; Pachner, M; Watanabe, D; Musilova, L; Hlusek, J Soybean cadmium concentration: validation of a QTL affecting seed cadmium accumulation for improved food safety.
EUPHYTICA. 2015; 203(1): 177-184. WoS FullText FullText_BOKU** Taghlidabad, RH; Khodaverdiloo, H; Wenzel, WW; Rezapour, S Growth and Cd accumulation of two halophytes and a non-halophyte grown in a non-saline and a saline soil with different Cd levels.
CHEM ECOL. 2014; 30(8): 743-754. WoS FullText FullText_BOKU** Zimmerl, S; Lafferty, J; Buerstmayr, H Assessing diversity in Triticum durum cultivars and breeding lines for high versus low cadmium content in seeds using the CAPS marker usw47.
PLANT BREEDING. 2014; 133(6): 712-717. WoS FullText FullText_BOKU** Puschenreiter, M; Wittstock, F; Friesl-Hanl, W; Wenzel, WW Predictability of the Zn and Cd phytoextraction efficiency of a Salix smithiana clone by DGT and conventional bioavailability assays.
PLANT SOIL. 2013; 369(1-2): 531-541. WoS FullText FullText_BOKU** Langer, I; Santner, J; Krpata, D; Fitz, WJ; Wenzel, WW; Schweiger, PF Ectomycorrhizal impact on Zn accumulation of Populus tremula L. grown in metalliferous soil with increasing levels of Zn concentration.
PLANT SOIL. 2012; 355(1-2): 283-297. WoS FullText FullText_BOKU** Neugschwandtner, RW; Tlustos, P; Komarek, M; Szakova, J; Jakoubkova, L CHEMICALLY ENHANCED PHYTOEXTRACTION OF RISK ELEMENTS FROM A CONTAMINATED AGRICULTURAL SOIL USING ZEA MAYS AND TRITICUM AESTIVUM: PERFORMANCE AND METAL MOBILIZATION OVER A THREE YEAR PERIOD.
INT J PHYTOREMEDIAT. 2012; 14(8): 754-771. WoS PubMed FullText FullText_BOKU** Puschenreiter, M; Türktaş, M; Sommer, P; Wieshammer, G; Laaha, G; Wenzel, WW; Hauser, MT; Differentiation of metallicolous and non-metallicolous Salix caprea populations based on phenotypic characteristics and nuclear microsatellite (SSR) markers..
** Gorfer, M; Persak, H; Berger, H; Brynda, S; Bandian, D; Strauss, J; Identification of heavy metal regulated genes from the root associated ascomycete Cadophora finlandica using a genomic microarray..
Mycol Res. 2009; 113(Pt 12):1377-1388 WoS PubMed FullText FullText_BOKU** Zehetner, F; Rosenfellner, U; Mentler, A; Gerzabek, MH Distribution of Road Salt Residues, Heavy Metals and Polycyclic Aromatic Hydrocarbons across a Highway-Forest Interface.
WATER AIR SOIL POLLUT. 2009; 198(1-4): 125-132. WoS FullText FullText_BOKU** Lair, GJ; Graf, M; Zehetner, F; Gerzabek, MH; Distribution of cadmium among geochemical fractions in floodplain soils of progressing development..
Environ Pollut. 2008; 156(1):207-214 WoS PubMed FullText FullText_BOKU** Neugschwandtner, RW; Tlustos, P; Komarek, M; Szakova, J Phytoextraction of Pb and Cd from a contaminated agricultural soil using different EDTA application regimes: Laboratory versus field scale measures of efficiency.
GEODERMA. 2008; 144(3-4): 446-454. WoS FullText FullText_BOKU** Dos Santos Utmazian, M.N., Wenzel, W.W. Cadmium and zinc accumulation in willow and poplar species grown on polluted soils.
J PLANT NUTR SOIL SC, 170, 265-272; ISSN 1436-8730 WoS FullText FullText_BOKU** Dos Santos Utmazian, MN; Wieshammer, G; Vega, R; Wenzel, WW Hydroponic screening for metal resistance and accumulation of cadmium and zinc in twenty clones of willows and poplars..
Environ Pollut. 2007; 148(1):155-165 WoS PubMed FullText FullText_BOKU** Gerlinde Wieshammer, Reinhard Unterbrunner, Teresa Bañares García, Michael F. Zivkovic, Markus Puschenreiter, Walter W. Wenzel Phytoextraction of Cd and Zn from agricultural soils by Salix ssp. and intercropping of Salix caprea and Arabidopsis halleri .
PLANT SOIL, 298, 255-264; ISSN 0032-079X WoS FullText FullText_BOKU** Gundacker, C; Pietschnig, B; Wittmann, KJ; Salzer, H; Stoger, H; Reimann-Dorninger, G; Schuster, E; Lischka, A Smoking, cereal consumption, and supplementation affect cadmium content in breast milk.
J EXPO SCI ENVIRON EPIDEMIOL. 2007; 17(1): 39-46. WoS PubMed FullText FullText_BOKU** Unterbrunner, R; Puschenreiter, M; Sommer, P; Wieshammer, G; Tlustos, P; Zupan, M; Wenzel, WW; Heavy metal accumulation in trees growing on contaminated sites in Central Europe..
Environ Pollut. 2007; 148(1):107-114 WoS PubMed FullText FullText_BOKU** Puschenreiter M and Horak O Slow-release zeolite-bound Zn and Cu fertilizers affect Cd content in wheat and spinach.
Comm. Soil Sci. Plant Anal., 34, 31-40 WoS FullText FullText_BOKU** Schulz, K; Huwe, B; Peiffer, S Parameter uncertainty in chemical equilibrium calculations using fuzzy set theory.
J HYDROL. 1999; 217(1-2): 119-134. WoS FullText FullText_BOKU** Arduini, I; Godbold, DL; Onnis, A Cadmium and copper uptake and distribution in Mediterranean tree seedlings.
PHYSIOL PLANTARUM. 1996; 97(1): 111-117. WoS FullText FullText_BOKU** ARDUINI, I; GODBOLD, DL; ONNIS, A CADMIUM AND COPPER CHANGE ROOT-GROWTH AND MORPHOLOGY OF PINUS-PINEA AND PINUS-PINASTER SEEDLINGS.
PHYSIOL PLANTARUM. 1994; 92(4): 675-680. WoS FullText FullText_BOKU