1. Watanabe, A., Takebayashi, Y., Ohtsubo, T. & Furukawa, M. (2009). Permeation of urea through various polyurethane membranes. Pest Managem. Sci. 65(11), 1233–1240. DOI: 10.1002/ps.1815.
3. Li, X., Bei, L., Sun, Z., Liu, K., Zhang, X. & Han, X. (2016). Permeation of fertilizer nutrients through polymer membrane: part I. Effect of P, K, and micronutrient fertilizer on permeability of urea. Asia-Pacific J. Chem. Engin. 11(2), 305–313. DOI: 10.1002/apj.1977.
4. Deng, X.N., Liu, K., Han, X., Hu, X. & Zheng, S. (2018). Permeability of p and k-nutrient through polystyrene membrane from aqueous solutions of urea + KH2PO4. Polish J. Chem. Technol. 20(4), 113–122. DOI: 10.2478/pjct-2018-0063.
5. Trinh, T.H., KuShaari, K., (2016). Dynamic of water absorption in controlled release fertilizer and its relationship with the release of nutrient. Proc. Engin. 148, 319–326. DOI: 10.1016/j.proeng.2016.06.444.
6. Hes, L., Bernardo, C.A. & Queirós, M.A., (1996). A new method for the determination of water-vapour permeability of polymer films based on the evaluation of the heat of evaporation. Polymer Testing. 15(2), 189–201. DOI: 10.1016/0142-9418(95)00031-3.
8. Wu, Y.L., Li, G.M., Li, J.F. & Liu, J. (2007). Transfer behavior of water vapor in polymer membranes and dehumidification of gases by membrane separation. Membrane Sci. & Technol. 03(27), 1–5. DOI : 10.16159/j.cnki.issn10078924.2007.03.001.
9. Zhu, W., Gora, L., Berg, A.W.C.V.D., Kapteijn, F., Jansen, J.C. & Moulijn, J.A. (2005). Water vapour separation from permanent gases by a zeolite-4A membrane. J. Membrane Sci. 253(1), 57–66. DOI: 10.1016/j.memsci.2004.12.039.
10. Gardebjer, S., Bergstrand, A. & Larsson, A., (2014). A mechanistic approach to explain the relation between increased dispersion of surface modified cellulose nanocrystals and final porosity in biodegradable films. Eur. Polym. J. 57(0), 160–168. DOI: 10.1016/j.eurpolymj.2014.05.020.
11. (a) Chen, X., He, Y., Shi, C., Fu, W., Bi, S., Wang, Z., Chen, L. (2014). Temperature- and pH-responsive membranes based on poly (vinylidene fluoride) functionalized with microgels. J. Membrane Sci. 469(11), 447–457. DOI: 10.1016/j.memsci.2014.07.005; (b) Frankenhaeuser, B., Moore, L.E. (1963). The effect of temperature on the sodium and potassium permeability changes in myelinated nerve fibres of Xenopus laevis. J. Physiol. 169(2), 431. DOI: 10.1113/jphysiol.1963.sp007269.
12. Dunkerley, E. & Schmidt, D. (2010). Effects of Composition, Orientation and Temperature on the O2 Permeability of Model Polymer/ClayNanocomposites. Macromolecules 43(24), 10536–10544. DOI: 10.1021/ma1018846.