By Horst Geckeis, Thomas Rabung, Thorsten Schäfer (auth.), Stepan N. Kalmykov, Melissa A. Denecke (eds.)
This is the 1st booklet to hide actinide nano learn. it really is of curiosity either for basic examine into the chemistry and physics of f-block components in addition to for utilized researchers comparable to these learning the long term protection of nuclear waste disposal and constructing remediation concepts. The authors conceal vital problems with the formation of actinide nano-particles, their homes and constitution, environmental habit of colloids and nanoparticles regarding the secure disposal of nuclear wastes, modeling and complicated equipment of characterization on the nano-scale.
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Extra resources for Actinide Nanoparticle Research
2004) Uranyl sorption by smectites: spectroscopic assessment of thermodynamic modeling. Journal of Colloid and Interface Science 277(2), 366–382. Actinide-Nanoparticle Interaction: Generation, Stability and Mobility 23 Choppin G. R. and Clark S. B. (1991) The kinetic interactions of metal-ions with humic acids. Marine Chemistry 36(1–4), 27–38. Chung K. , Park K. , and Kim J. I. (1998) A study of the surface sorption process of Cm(III) on silica by time-resolved laser fluorescence spectroscopy (I).
And Fritz P. (1998a) Characterization of humic and fulvic acids from the Gorleben aquifer system by GPC with UV/Vis and fluorescence detection. 9th international meeting of the International Humic Substance Society. , and Kim J. I. (1998b) Effects of humic substances on the 241Am migration in a sandy aquifer: Column experiments with Gorleben groundwater/ sediment systems. Journal of Contaminant Hydrology 35, 261–275. , and Kim J. I. (2000) Characterization of groundwater humic substances: Influence of sedimentary organic carbon.
2007) and may undergo variable geochemical reactions including colloid formation. In the vadose zone below the leaking tanks colloids experience retention in variable water films in the soil. Under saturated conditions Cs is found to desorb from colloids (Chen and Flury 2005). 2 mm) in the oxidation states III and IV (Dai et al. 2005). However, Pu concentrations and 14 H. Geckeis et al. fractions of colloidal species decrease downstream. Thus, no clear evidence for the colloid enhanced Pu migration over longer distances could be derived from observations.
Actinide Nanoparticle Research by Horst Geckeis, Thomas Rabung, Thorsten Schäfer (auth.), Stepan N. Kalmykov, Melissa A. Denecke (eds.)