Published December 1987 | Version v1
Journal article

Development of adsorbents for recovery of uranium from seawater

  • 1. Kumamoto Univ.. (Japan)

Description

The largest subject for putting the extraction of uranium from seawater in practical use is the development of high performance adsorbents for uranium. In this paper, the way of thinking about the development of adsorbents for extracting uranium from seawater and the recent reports on this subject are described. Next, the research on the adsorbing capacity and adsorbing rate of the adsorbents developed so far is summarized, and the way of thinking about the evaluation of adsorbent performance which is the base of the design of a system for extracting uranium from seawater is explained, taking amidoxime type adsorbent as the example. For Japan where energy resources are scant, the uranium contained in seawater, which is estimated to be about 4.2 billion t, is the most luring important element. Uranium is contained in seawater is very low concentration of 3 ppb, and exists as anion complex salt. In 1960s, the Harwell Atomic Energy Research Establishment in UK found out that titanium oxide hydrate is the most promising as the adsorbent. Also a number of organic absorbents have been developed. In order to bring adsorbents in contact with seawater, pumping, ocean current and wave force are utilized. Adsorbents are in spherical, fiber and film forms, and held as fixed beds and fluidized beds. (Kako, I.)

Availability note (English)

Available from DOI: https://doi.org/10.3327/jaesj.29.1079

Abstract (Japanese)

海水U採取を実用化するための最大の課題は高性能U吸着剤の開発である。本稿では、海水U採取用吸着剤開発に関する考え方と最近の報告を紹介し、次に、これまで開発された吸着剤の吸着容量および吸着速度に関する研究をまとめ、海水U採取システム設計の基礎をなす吸着剤性能評価の考え方をアミドキシム型吸着剤を例にとって解説した。(著者)

Additional details

Additional titles

Original title (Japanese)
海水ウラン採取用吸着剤開発の動向

Identifiers

Publishing Information

Journal Title
Nippon Genshiryoku Gakkai-Shi
Journal Volume
29
Journal Issue
12
Journal Page Range
p. 1079-1086
ISSN
0004-7120
CODEN
NGEGAL

Optional Information

Notes
This record replaces 19081815; 48 refs.