共 74 条
- [31] Li C., Xiao J.-L., Sun S.-Y., Et al., Preparation and lithium adsorption evaluation for spherical ion-sieve granulated by agarose, CIESC Journal, 65, 1, pp. 220-226, (2014)
- [32] Hoshino T., Preliminary studies of lithium recovery technology from seawater by electrodialysis using ionic liquid membrane, Desalination, 317, pp. 11-16, (2013)
- [33] Hoshino T., Development of technology for recovering lithium from seawater by electrodialysis using ionic liquid membrane, Fusion Engineering and Design, 88, 11, pp. 2956-2959, (2013)
- [34] Hoshino T., Development of high-efficiency lithium recovery from seawater by electrodialysis using ionic liquid, Abstracts of Papers of the American Chemical Society, (2013)
- [35] Lan S.J., Wen X.M., Zhu Z.H., Et al., Recycling of spent nitric acid solution from electrodialysis by diffusion dialysis, Desalination, 278, 1-3, pp. 227-230, (2011)
- [36] Chitrakar R., Makita Y., Ooi K., Et al., Synthesis of iron-doped manganese oxides with an ion-sieve property: lithium adsorption from Bolivian Brine, Industrial & Engineering Chemistry Research, 53, 9, pp. 3682-3688, (2014)
- [37] Kim J.S., Lee Y.H., Choi S., Et al., An electrochemical cell for selective lithium capture from seawater, Environmental Science & Technology, 49, 16, pp. 9415-9422, (2015)
- [38] Kim S., Lee J., Kang J.S., Et al., Lithium recovery from brine using a lambda-MnO<sub>2</sub>/activated carbon hybrid supercapacitor system, Chemosphere, 125, pp. 50-56, (2015)
- [39] Liu X.H., Chen X.Y., Zhao Z.W., Et al., Effect of Na<sup>+</sup> on Li extraction from brine using LiFePO<sub>4</sub>/FePO<sub>4</sub> electrodes, Hydrometallurgy, 146, pp. 24-28, (2014)
- [40] Trocoli R., Battistel A., La Mantia F., Selectivity of a lithium-recovery process based on LiFePO<sub>4</sub> , Chemistry-A European Journal, 20, 32, pp. 9888-9891, (2014)