Hydrolysis of Uranium(VI) at Variable Temperatures (10−85 °C)

Author:

Zanonato PierLuigi1,Di Bernardo Plinio1,Bismondo Arturo1,Liu Guokui1,Chen Xueyuan1,Rao Linfeng1

Affiliation:

1. Contribution from the Dipartimento di Chimica Inorganica Metallorganica ed Analitica, Università di Padova, via Loredan 4, 35131, Padova, Italy; Istituto di Chimica Inorganica e delle Superfici del C.N.R. of Padova, Corso Stati Uniti 4, 35127, Padova, Italy; Chemistry Division, Argonne National Laboratory, Argonne, Illinois 60439; and Glenn T. Seaborg Center, Lawrence Berkeley National Laboratory, Berkeley, California 94720

Publisher

American Chemical Society (ACS)

Subject

Colloid and Surface Chemistry,Biochemistry,General Chemistry,Catalysis

Reference41 articles.

1. Grenthe, I.; Fuger, J.; Konings, R. J. M.; Lemire, R. J.; Muller, A. B.; Nguyen-Trung, C.; Wanner, H.Chemical thermodynamics of uranium; Wanner, H., Forest, I., Eds.; Elsevier Science Publishers B.V.  Amsterdam, 1992; pp 98−119.

2. Guillaumont, R.; Fanghanel, T.; Fuger, J.; Grenthe, I.; Neck, V.; Palmer, D. A.; Rand. M. H.Update on the chemical thermodynamics of uranium,neptunium, plutonium, americium and technetium; Mompean, F. J., Illemassene, M., Domenech-Orti, C., Ben Said, K., Eds.; Elsevier B.V.  Amsterdam, 2003; pp 46−47, 64, 716, 724−728.

3. Ion product of water substance, 0–1000 °C, 1–10,000 bars New International Formulation and its background

4. A Formulation for the Static Permittivity of Water and Steam at Temperatures from 238 K to 873 K at Pressures up to 1200 MPa, Including Derivatives and Debye–Hückel Coefficients

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