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Lithium Aluminate Spheroids Prepared by Emulsion
Development of Fabrication Methods for Lithium
Development of Small Spherical Lithium Ceramics
18 other sections not shown
addition amount analysis annealing atmosphere blanket breeder materials calcined calculated capsule coefficient compatibility composition concentration considered container controlled crystal decrease density dependence desorption determined developed diameter diffusion distribution drop effect equation experimental experiments fabrication flow rate fraction Fusion grain heating higher hydrogen impurity increase indicated initial irradiation larger layer lithium aluminate Lithium Ceramics material maximum measured mechanism melting method mixing mixture neutron observed obtained oxide packing particles peak pebbles pellets performed phase pore powder prepared present pressure production properties range reaction reactor recovery rate reference reported Research sample shown in Figure shows single sintering sintering temperature solid solution specimen spheres stainless steel structure surface sweep gas Table temperature thermal thermal conductivity tritium recovery tritium release tube values volume weight