Published 1996 | Version v1
Book

Description and classification of uranium oxide hydrate sheet topologies

  • 1. Univ. of New Mexico, Albuquerque, NM (United States). Dept. of Earth and Planetary Sciences
  • 2. Univ. of Manitoba, Winnipeg, Manitoba (Canada). Dept. of Geological Sciences

Description

The uranyl oxide hydrates (UOH) are important corrosion products of uraninite and UO2 in spent nuclear fuel under oxidizing conditions. However, the systematics of the crystal chemistry, thermodynamic parameters, and solubilities of this mineral group are poorly understood. With the exception of the synthetic UO2(OH)2 polymorphs, all UOH crystal structures are based on sheets of edge-sharing 5 and 4-coordinated uranyl dipyramids. This structural similarity suggests that it is possible to develop a model by which to estimate the thermodynamic behavior of UOHs from data on structural endmember phases. Toward this end, a method of quantitatively describing all known UOH sheets has been developed. Only four structural unit chains are required to construct the uranyl oxide hydrate sheets (as well as the structurally similar U3O8 sheets). The H-chain is restricted to α-UO2(OH)2 and is made up of hexagonally coordinated uranyl ions sharing opposing edges. The arrowhead chain composed of pentagonal dipyramids sharing edges and alternating with trigonal vacancies is present in all other UOH sheets. These arrowhead chains are directed and can occur in both an Up-arrow and Down-arrow sense within a single sheet. The P-chain consists of edge-sharing pentagonal dipyramids forming a zigzag chain. The P-chain is flanked on both sides by arrowhead chains of the same sense. The remaining structural unit is a discontinuous chain of rhombic dipyramids. This R-chain is produced when nested adjacent Up-arrow and Down-arrow arrowhead chains are translated by a diagonal shift. This chain occurs in sheets which contain only 4-coordinate uranyl ion and those containing both 4- and 5-coordinate uranyl ions

Additional details

Publishing Information

Publisher
Materials Research Society.
Imprint Place
Pittsburgh, PA (United States)
ISBN
1-55899-315-0
Imprint Title
Scientific basis for nuclear waste management 19
Imprint Pagination
957 p.
Series
Materials Research Society symposium proceedings, Volume 412.
Journal Page Range
p. 369-376.

Conference

Title
Fall meeting of the Materials Research Society (MRS).
Dates
27 Nov - 1 Dec 1995.
Place
Boston, MA (United States).

Optional Information

Secondary number(s)
CONF-951155--.