15.07.2021 | History

3 edition of Emerging Separation Technologies for Metals and Fuels found in the catalog.

Emerging Separation Technologies for Metals and Fuels

Proceedings

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Published by Administrator in Minerals, Metals, & Materials Society

    Places:
  • United States
    • Subjects:
    • Minerals, Metals, & Materials Society


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      • nodata

        StatementMinerals, Metals, & Materials Society
        PublishersMinerals, Metals, & Materials Society
        Classifications
        LC ClassificationsMay 1993
        The Physical Object
        Paginationxvi, 57 p. :
        Number of Pages88
        ID Numbers
        ISBN 100873392051
        Series
        1nodata
        2
        3

        nodata File Size: 3MB.


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Emerging Separation Technologies for Metals and Fuels by Minerals, Metals, & Materials Society Download PDF EPUB FB2


Batch extraction studies identified ethylenediamine-tetraacetic acid EDTA and citric acid as potential chelating agents for soil washing to remove heavy metals. Propulsion entails the direct to power rockets, airplanes, and jets, with liquid oxygen-hydrogen systems gaining in popularity for space propulsion. Other Aqueous Processes In addition to PUREX and TRUEX, there are a number of other TRU and fission-product separations processes that have, or hold promise for, application to spent reactor fuel or defense wastes.

163-171 Progress in Nuclear Energy, Series III, Process Chemistry, Vol. The H2 gas passes through a special plate to dissociate the hydrogen molecules to hydroxide atoms.

The final goal of this plan is to provide access to over 100 refueling stations by 2030.

Our Solutions

Other contaminants include PCBs, 1,1,2,2-tetrachloroethane, and trichloroethene.Australia, Brazil, South Africa, and other nations. Sepration of Heavy Metals: Removal From Industrial Wastewaters and Contaminated Soil Robert W. The principal elements in them are actinides primarily uranium and fission products, with the radionuclides of primary concern changing somewhat with the time frame being considered.

Membrane-based contactor systems are described which are uniquely suited for enhanced solvent extraction with microemulsions.