Tekla Tammelin, Research Professor, VTT Technical Research Centre of Finland Ltd
References:
Ulbricht, M. 2006. Advanced functional polymer membranes. Polymer 47(7): 2217–2262.
Membrane Technology in the Chemical Industry, Part I, Nunes, S. P. Peine-mann, K. V. Wiley-VCH, 2001. Weinheim, Germany; Nanofiltration. Principles and applications, Schäfer. A.I. Fane, A.G., Waite, T.D. Elsevier Ltd. 2005, Oxford, UK.
Tammelin, T., Salminen, A. and Hippi, U. 2013. Method for the preparation of nanofibrillated cellulose (NFC) films on supports. PCT Int. Appl. WO 2013060934 A2 20130502.
Mäkelä, T., Kainlauri, M., Willberg-Keyriläinen, P., Tammelin, T. and Forsström, U. 2016. Fabrication of micropillars on nanocellulose films using a roll-to-roll nanoimprinting method. Microelectron. Eng. 163: 1–6.
Orelma, H., Filpponen, I., Johansson, L.S., Österberg, M., Rojas, O.J. and Laine, J. 2012. Surface functionalized nanofibrillar cellulose (NFC) film as a platform for immunoassays and diagnostics. Biointerphases, 7(61): 1–12.
Aulin, C., Netrval, J., Wågberg, L. and Lindström, T. 2010. Aerogels from nanofibrillated cellulose with tunable oleophobicity. Soft Matter 6(14): 3298–3305.
Peresin, M.S., Kammiovirta, K., Heikkinen, H., Johansson, L.S., Vartiainen, J., Setälä, H., Österberg, M. and Tammelin, T. 2017. Understanding the mechanisms of oxygen diffusion through surface functionalized nanocellulose films. Carbohydr. Polym. 174: 309–317.
Mautner, A., Lee, K.Y., Lahtinen, P., Hakalahti, M., Tammelin, T., Li, K. and Bismarck, A. 2014. Nanopapers for organic solvent nanofiltration. Chem. Comm. 50(43): 5778–5781.
Orelma, H., Vuoriluoto, M., Johansson, L.S., Campbell, J.M., Filpponen, I., Biesalski, M. and Rojas, O.J. 2016. Preparation of photoreactive nanocellulosic materials via benzophenone grafting. RSC Adv. 6(88): 85100–85106.
Hakalahti, M., Salminen, A., Seppälä, J., Tammelin, T. and Hänninen, T., 2015. Effect of interfibrillar PVA bridging on water stability and mechanical properties of TEMPO/NaClO2 oxidized cellulosic nanofibril films. Carbohydr. Polym. 126: 78–82.
Karim, Z., Hakalahti, M., Tammelin, T. and Mathew, A.P. 2017. In situ TEMPO surface functionalization of nanocellulose membranes for enhanced adsorption of metal ions from aqueous medium. RSC Adv. 7(9): 5232–5241.
Saito, T. and Isogai, A. 2005. Ion-exchange behavior of carboxylate groups in fibrous cellulose oxidized by the TEMPO-mediated system. Carbohydr. Polym. 61(2): 183–190.
Ma, H., Burger, C., Hsiao, B.S. and Chu, B. 2011. Nanofibrous microfiltration membrane based on cellulose nanowhiskers. Biomacromolecules 13(1): 180–186.
Jönsson, C. and Jönsson, A.S. 1995. Influence of the membrane material on the adsorptive fouling of ultrafiltration membranes. J. Membr. Sci. 108(1–2): 79–87.
Li, H.J., Cao, Y.M., Qin, J.J., Jie, X.M., Wang, T.H., Liu, J.H. and Yuan, Q. 2006. Development and characterization of anti-fouling cellulose hollow fiber UF membranes for oil–water separation. J. Membr. Sci. 279(1–2): 328–335.
Meng, X., Tang, W., Wang, L., Wang, X., Huang, D., Chen, H. and Zhang, N. 2015. Mechanism analysis of membrane fouling behavior by humic acid using atomic force microscopy: Effect of solution pH and hydrophilicity of PVDF ultrafiltration membrane interface. J. Membr. Sci. 487: 180–188.
Sakairi, N., Suzuki, S., Ueno, K., Han, S.M., Nishi, N. and Tokura, S., 1998. Biosynthesis of hetero-polysaccharides by Acetobacter xylinum-Synthesis and characterization of metal-ion adsorptive properties of partially carboxymethylated cellulose. Carbohydr. Polym. 37(4): 409–414.
Ma, H., Hsiao, B.S. and Chu, B. 2011. Ultrafine cellulose nanofibers as efficient adsorbents for removal of UO22+ in water. ACS Macro Lett. 1: 213–216.
Hokkanen, S., Bhatnagar, A. and Sillanpää, M. 2016. A review on modification methods to cellulose-based adsorbents to improve adsorption capacity. Water research 91: 156–173.
Carpenter, A.W., de Lannoy, C.F. and Wiesner, M.R. 2015. Cellulose nanomaterials in water treatment technologies. Environ. Sci. Technol. 49(9): 5277–5287.
Mautner, A., Hakalahti, M. Rissanen, V. and Tammelin, T. Crucial interfacial features of nanocellulose materials. In: Nanocellulose and Sustainability: Production, Properties, Applications, and Case Studies, Lee, K. Y. (Ed), Taylor-Francis/CRC Press 2018, pp. 87–128.
Mathew, A.P., Liu, P., Karim, Z. and Lai, J. 2018. Nanocellulose-Based Membranes for Water Purification: Fundamental Concepts and Scale-Up Potential. In: Nanocellulose and Sustainability: Production, Properties, Applications, and Case Studies, Lee, K. Y. (Ed), Taylor-Francis/CRC Press 2018, pp. 129–146.
Hakalahti, M. Cellulose nanofibril films as bioinspired membranes. Capitalizing on water interactions. Aalto University publication series, Doctoral dissertations 31/2018, VTT Science 171, Helsinki 2018
Mautner, A., Lee, K.Y., Tammelin, T., Mathew, A.P., Nedoma, A.J., Li, K. and Bismarck, A. 2015. Cellulose nanopapers as tight aqueous ultra-filtration membranes. React. Funct. Polym. 86: 209–214.
Liu, P., Borrell, P.F., Božič, M., Kokol, V., Oksman, K. and Mathew, A.P. 2015. Nanocelluloses and their phosphorylated derivatives for selective adsorption of Ag+, Cu2+ and Fe3+ from industrial effluents. J. Hazard. Mat. 294: 177–185.
Sehaqui, H., de Larraya, U.P., Liu, P., Pfenninger, N., Mathew, A.P., Zimmermann, T. and Tingaut, P. 2014. Enhancing adsorption of heavy metal ions onto biobased nanofibers from waste pulp residues for application in wastewater treatment. Cellulose 21(4): 2831–2844.
Ruan, C., Strømme, M. and Lindh, J. 2016. A green and simple method for preparation of an efficient palladium adsorbent based on cysteine functionalized 2, 3-dialdehyde cellulose. Cellulose 23(4): 2627–2638.
Sirviö, J.A., Hasa, T., Leiviskä, T., Liimatainen, H. and Hormi, O. 2016. Bisphosphonate nanocellulose in the removal of vanadium (V) from water. Cellulose 23(1): 689–697.
Kokol, V., Božič, M., Vogrinčič, R. and Mathew, A.P. 2015. Characterisation and properties of homo-and heterogenously phosphorylated nanocellulose. Carbohydr. Polym. 125: 301–313.
Sehaqui, H., Mautner, A., de Larraya, U.P., Pfenninger, N., Tingaut, P. and Zimmermann, T., 2016. Cationic cellulose nanofibers from waste pulp residues and their nitrate, fluoride, sulphate and phosphate adsorption properties. Carbohydr. Polym. 135: 334–340.
Karim, Z., Mathew, A.P., Kokol, V., Wei, J. and Grahn, M. 2016. High-flux affinity membranes based on cellulose nanocomposites for removal of heavy metal ions from industrial effluents. RSC Advances, 6(25), pp. 20644–20653.
Karim, Z., Claudpierre, S., Grahn, M., Oksman, K. and Mathew, A.P. 2016. Nanocellulose based functional membranes for water cleaning: Tailoring of mechanical properties, porosity and metal ion capture. J. Membr. Sci. 514: 418–428.
Mautner, A., Maples, H.A., Sehaqui, H., Zimmermann, T., de Larraya, U.P., Mathew, A.P., Lai, C.Y., Li, K. and Bismarck, A. 2016. Nitrate removal from water using a nanopaper ion-exchanger. Environ. Sci.: Water Res.Technol. 2(1): 117-124.
Hakalahti, M., Mautner, A., Johansson, L.-S., Hänninen, T., Setälä, H., Kontturi, E., Bismarck, A. and Tammelin, T. 2016, Direct interfacial modification of nanocellulose films for thermoresponsive membrane templates. ACS Appl. Mater. Interfaces 8(5): 2923–2972.
Ma, H., Burger, C., Hsiao, B.S. and Chu, B., 2012. Highly permeable polymer membranes containing directed channels for water purification. ACS Macro Lett. 1: 723–726.
Hakalahti, M., Arola, S., Jääskeläinen, A.-S. and Tammelin, T. 2019. A method of capturing microplastic particles from aqueous medium. Patent application FI20195359.
Liu H, Geng B, Chen Y, Wang H. 2016. A review on the aerogel-type oil sorbents derived from nanocellulose. ACS Sustainable Chem. Eng. 5(1): 49–66.
Korhonen, J.T., Kettunen, M., Ras, R.H. and Ikkala, O. 2011. Hydrophobic nanocellulose aerogels as floating, sustainable, reusable, and recyclable oil absorbents. ACS Appl. Mater. Interfaces 3(6): 1813–1816.
Zhou, S., Liu, P., Wang, M., Zhao, H., Yang, J. and Xu, F. 2016. Sustainable, reusable, and superhydrophobic aerogels from microfibrillated cellulose for highly effective oil/water separation. ACS Sustainable Chem. Eng. 4(12): 6409–6416.
Mulyadi, A., Zhang, Z. and Deng, Y., 2016. Fluorine-free oil absorbents made from cellulose nanofibril aerogels. ACS Appl. Mater. Interfaces 8(4): 2732–2740.