共 34 条
- [1] Wei C., Li X.B., Deng Z.G., Et al., Recovery of H<sub>2</sub>SO<sub>4</sub> from an acid leach solution by diffusion dialysis, Journal of Hazardous Materials, 176, 1-3, pp. 226-230, (2010)
- [2] Xu T.W., Yang W.H., Industrial recovery of mixed acid(HF+HNO<sub>3</sub>)from the titanium spent leaching solutions by diffusion dialysis with a new series of anion exchange membranes, Journal of Membrane Science, 220, 1-2, pp. 89-95, (2003)
- [3] Agrawal A., Sahu K.K., An overview of the recovery of acid from spent acidic solutions from steel and electroplating industries, Journal of Hazardous Materials, 171, 1-3, pp. 61-75, (2009)
- [4] Shin C.-H., Kim J.-Y., Kim J.-Y., Et al., Recovery of nitric acid from waste etching solution using solvent extraction, Journal of Hazardous Materials, 163, 2-3, pp. 729-734, (2009)
- [5] Luo J.Y., Wu C.M., Xu T.W., Et al., Diffusion dialysis-concept, principle and applications, Journal of Membrane Science, 366, 1-2, pp. 1-16, (2011)
- [6] Xu J., Lu S.G., Fu D., Recovery of hydrochloric acid from the waste acid solution by diffusion dialysis, Journal of Hazardous Materials, 165, 1-3, pp. 832-837, (2009)
- [7] Xu T.W., Yang W.H., Sulfuric acid recovery from titanium white(pigment)waste liquor using diffusion dialysis with a new series of anion exchange membranes-static runs, Journal of Membrane Science, 183, 2, pp. 193-200, (2001)
- [8] Stachera D.M., Childs R.F., Tuning the acid recovery performance of poly(4-vinylpyridine)-filled membranes by the introduction of hydrophobic groups, Journal of Membrane Science, 187, 1-2, pp. 213-225, (2001)
- [9] Li N.W., Guiver M.D., Ion transport by nanochannels in ion-containing aromatic copolymers, Macromolecules, 47, 7, pp. 2175-2198, (2014)
- [10] Liu Z., Li X.B., Shen K.Z., Et al., Naphthalene-based poly(arylene ether ketone)anion exchange membranes, Journal of Materials Chemistry A, 1, 21, pp. 6481-6488, (2013)