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2018 | OriginalPaper | Chapter

4. Revolution in the Form of Polymeric Adsorbents 2: Fibers, Films, and Particles

Authors : Kyoichi Saito, Kunio Fujiwara, Takanobu Sugo

Published in: Innovative Polymeric Adsorbents

Publisher: Springer Singapore

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Abstract

Commercially available adsorbents are in the form of beads, granules, and short-length fibers. A 15-cm-diameter bobbin consisting of a fiber can be modified by radiation-induced graft polymerization. The fiber of the resultant bobbin can be fabricated into a wound filter, a nonwoven fabric, or a braid depending on the conditions of practical separation. In this chapter, examples of the application of functional fibers are the recovery of uranium from seawater using a chelating-group-immobilized fiber and the resolution of neodymium and dysprosium using an extractant-impregnated fiber. In addition, a polyethylene film is modified into ion-exchange membranes installed in an electrodialyzer for the production of edible salt.

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Literature
1.
go back to reference K. Saito, Preparation of polymeric fibers immobilizing inorganic compounds, enzymes, and extractants designed for radionuclide decontamination, ultrapure water production, and rare-earth metal purification. Kobunshi Ronbunshu 71, 211–222 (2014)CrossRef K. Saito, Preparation of polymeric fibers immobilizing inorganic compounds, enzymes, and extractants designed for radionuclide decontamination, ultrapure water production, and rare-earth metal purification. Kobunshi Ronbunshu 71, 211–222 (2014)CrossRef
2.
go back to reference G.B. Barton, J.L. Hepworth, E.D. McClanahan, R.L. Moore, H.H. Van Tuyl, Chemical processing waster; recovering fission products. Ind. Eng. Chem. 50, 212–216 (1958)CrossRef G.B. Barton, J.L. Hepworth, E.D. McClanahan, R.L. Moore, H.H. Van Tuyl, Chemical processing waster; recovering fission products. Ind. Eng. Chem. 50, 212–216 (1958)CrossRef
3.
go back to reference J. Letho, R. Harjula, J. Wallace, Adsorption of cesium on potassium cobalt hexacyanoferrate(lll). J. Radioanal. Nucl. Chem. 111, 297–304 (1987)CrossRef J. Letho, R. Harjula, J. Wallace, Adsorption of cesium on potassium cobalt hexacyanoferrate(lll). J. Radioanal. Nucl. Chem. 111, 297–304 (1987)CrossRef
4.
go back to reference H. Mimura, J. Lehto, R. Harjula, Chemical and thermal stability of potassium nickel hexacyanoferrate(ll). J. Nucl. Sci. Technol. 34, 582–587 (1997)CrossRef H. Mimura, J. Lehto, R. Harjula, Chemical and thermal stability of potassium nickel hexacyanoferrate(ll). J. Nucl. Sci. Technol. 34, 582–587 (1997)CrossRef
5.
go back to reference I. Izmail, M. El-Sourough, N. Moneim, H. Aly, Equilibrium and kinetics studies of the sorption of cesium by potassium nickel hexacyanoferrate complex. J. Radioanal. Nucl. Chem. 240, 59–67 (1999)CrossRef I. Izmail, M. El-Sourough, N. Moneim, H. Aly, Equilibrium and kinetics studies of the sorption of cesium by potassium nickel hexacyanoferrate complex. J. Radioanal. Nucl. Chem. 240, 59–67 (1999)CrossRef
6.
go back to reference K. Watari, M. Izawa, Separation of radiocesium by copper ferrocyanide-anion exchange resin. J. Nucl. Sci. Technol. 2, 321–322 (1965)CrossRef K. Watari, M. Izawa, Separation of radiocesium by copper ferrocyanide-anion exchange resin. J. Nucl. Sci. Technol. 2, 321–322 (1965)CrossRef
7.
go back to reference K. Watari, K. Imai, M. Izawa, Radiochemical application of iron ferrocyanide-anion exchange resin. J. Nucl. Sci. Technol. 5, 309–312 (1968)CrossRef K. Watari, K. Imai, M. Izawa, Radiochemical application of iron ferrocyanide-anion exchange resin. J. Nucl. Sci. Technol. 5, 309–312 (1968)CrossRef
8.
go back to reference T.P. Valsala, A. Joseph, J.G. Shah, K. Raj, V. Venugopal, Synthesis and characterization of cobalt ferrocyanides loaded on organic anion exchanger. J. Nucl. Mater. 384, 146–152 (2009)CrossRef T.P. Valsala, A. Joseph, J.G. Shah, K. Raj, V. Venugopal, Synthesis and characterization of cobalt ferrocyanides loaded on organic anion exchanger. J. Nucl. Mater. 384, 146–152 (2009)CrossRef
9.
go back to reference T.P. Valsala, S.C. Roy, J.G. Shah, J. Gabriel, K. Raj, V. Venugopal, Removal of radioactive caesium from low level radioactive waste (LLW) streams using cobalt ferrocyanide impregnated organic anion exchanger. J. Hazard Mater. 166, 1148–1153 (2009) T.P. Valsala, S.C. Roy, J.G. Shah, J. Gabriel, K. Raj, V. Venugopal, Removal of radioactive caesium from low level radioactive waste (LLW) streams using cobalt ferrocyanide impregnated organic anion exchanger. J. Hazard Mater. 166, 1148–1153 (2009)
10.
go back to reference K. Tanihara, Selective separation of cesium from strongly acidic nitrate media by repeated use of cupric ferrocyanide-silica gel composite ion exchanger of redox type. in Reports of the Kyushu National Industrial Research Institute, No. 61, pp. 23–28 (1998) K. Tanihara, Selective separation of cesium from strongly acidic nitrate media by repeated use of cupric ferrocyanide-silica gel composite ion exchanger of redox type. in Reports of the Kyushu National Industrial Research Institute, No. 61, pp. 23–28 (1998)
11.
go back to reference H. Mimura, M. Kimura, K. Akiba, Y. Onodera, Selective removal of cesium from highly concentrated sodium nitrate neutral solutions by potassium nickel hexacyanoferrate(ll)-loaded silica gels. Solvent Extr. Ion Exch. 17, 403–417 (1999)CrossRef H. Mimura, M. Kimura, K. Akiba, Y. Onodera, Selective removal of cesium from highly concentrated sodium nitrate neutral solutions by potassium nickel hexacyanoferrate(ll)-loaded silica gels. Solvent Extr. Ion Exch. 17, 403–417 (1999)CrossRef
12.
go back to reference H. Mimura, M. Kimura, K. Akiba, Y. Onodera, Separation of cesium and strontium by potassium hexacyanoferrate(ll)-loaded zeolite A. J. Nucl. Sci. Technol. 36, 307–310 (1999)CrossRef H. Mimura, M. Kimura, K. Akiba, Y. Onodera, Separation of cesium and strontium by potassium hexacyanoferrate(ll)-loaded zeolite A. J. Nucl. Sci. Technol. 36, 307–310 (1999)CrossRef
13.
go back to reference R. Ishihara, K. Fujiwara, T. Harayama, Y. Okamura, S. Uchiyama, M. Sugiyama, T. Someya, W. Amakai, S. Umino, T. Ono, A. Nide, Y. Hirayama, T. Baba, T. Kojima, D. Umeno, K. Saito, S. Asai, T. Sugo, Removal of cesium using cobalt-ferrocyanide-impregnated polymer-chain-grafted fibers. J. Nucl. Sci. Technol. 48, 1281–1284 (2011)CrossRef R. Ishihara, K. Fujiwara, T. Harayama, Y. Okamura, S. Uchiyama, M. Sugiyama, T. Someya, W. Amakai, S. Umino, T. Ono, A. Nide, Y. Hirayama, T. Baba, T. Kojima, D. Umeno, K. Saito, S. Asai, T. Sugo, Removal of cesium using cobalt-ferrocyanide-impregnated polymer-chain-grafted fibers. J. Nucl. Sci. Technol. 48, 1281–1284 (2011)CrossRef
14.
go back to reference Y. Hirayama, Y. Okamura, K. Fujiwara, T. Sugo, D. Umeno, K. Saito, Effect of salt concentration of cesium solution on cesium-binding capacity of potassium cobalt-hexacyanoferrate-impregnated fiber. J. Chem. Eng. Japan. 39, 28–32 (2013) Y. Hirayama, Y. Okamura, K. Fujiwara, T. Sugo, D. Umeno, K. Saito, Effect of salt concentration of cesium solution on cesium-binding capacity of potassium cobalt-hexacyanoferrate-impregnated fiber. J. Chem. Eng. Japan. 39, 28–32 (2013)
15.
go back to reference Y. Okamura, K. Fujiwara, N. Iijima, T. Syoda, K. Suzuki, T. Sugo, T. Shimidu, R. Itagaki, A. Takahashi, T. Ono, T. Kikuchi, T. Someya, R. Ishihara, T. Kojima, D. Umeno, K. Saito, J. Ion Exch. 24, 8–13 (2013)CrossRef Y. Okamura, K. Fujiwara, N. Iijima, T. Syoda, K. Suzuki, T. Sugo, T. Shimidu, R. Itagaki, A. Takahashi, T. Ono, T. Kikuchi, T. Someya, R. Ishihara, T. Kojima, D. Umeno, K. Saito, J. Ion Exch. 24, 8–13 (2013)CrossRef
16.
go back to reference W. Amakai, M. Sugiyama, K. Fujiwara, T. Sugo, D. Umeno, K. Saito, Adsorption isotherms for cesium ions in seawater of insoluble cobalt and nickel ferrocyanide-impregnated fibers. Bull. Soc. Sea Water Sci. Jpn. 68, 18–24 (2014) W. Amakai, M. Sugiyama, K. Fujiwara, T. Sugo, D. Umeno, K. Saito, Adsorption isotherms for cesium ions in seawater of insoluble cobalt and nickel ferrocyanide-impregnated fibers. Bull. Soc. Sea Water Sci. Jpn. 68, 18–24 (2014)
17.
go back to reference W. Amakai, Y. Okamura, K. Fujiwara, T. Sugo, D. Umeno, K. Saito, Impregnation of insoluble cobalt ferrocyanide onto poly-(vinylbenzyl) trimethylammonium-chloride chain grafted onto 6-nylon fiber for the removal of cesium ions from freshwater. J. Soc. Remedi. Radioact. Contami. Environ. 2, 93–99 (2014) W. Amakai, Y. Okamura, K. Fujiwara, T. Sugo, D. Umeno, K. Saito, Impregnation of insoluble cobalt ferrocyanide onto poly-(vinylbenzyl) trimethylammonium-chloride chain grafted onto 6-nylon fiber for the removal of cesium ions from freshwater. J. Soc. Remedi. Radioact. Contami. Environ. 2, 93–99 (2014)
18.
go back to reference S. Goto, W. Amakai, K. Fujiwara, T. Sugo, T. Kojima, S. Kawai-Noma, D. Umeno, K. Saito. A novel preparation scheme for cesium-adsorptive fibers to raise the impregnation percentage of insoluble cobalt ferrocyanide. Bull. Soc. Sea Water Sci. Jpn. 68, 298–304 (2014) S. Goto, W. Amakai, K. Fujiwara, T. Sugo, T. Kojima, S. Kawai-Noma, D. Umeno, K. Saito. A novel preparation scheme for cesium-adsorptive fibers to raise the impregnation percentage of insoluble cobalt ferrocyanide. Bull. Soc. Sea Water Sci. Jpn. 68, 298–304 (2014)
19.
go back to reference T. Someya, S. Asai, K. Fujiwara, T. Sugo, D. Umeno, K. Saito. Removal of cesium ions from contaminated seawater in closed area using adsorptive fiber. Bull. Soc. Sea Water Sci. Jpn. 69, 42–48 (2015) T. Someya, S. Asai, K. Fujiwara, T. Sugo, D. Umeno, K. Saito. Removal of cesium ions from contaminated seawater in closed area using adsorptive fiber. Bull. Soc. Sea Water Sci. Jpn. 69, 42–48 (2015)
20.
go back to reference M. Sugiyama, S. Goto, T. Kojima, K. Fujiwara, T. Sugo, D. Umeno, K. Saito, Impregnation process of insoluble cobalt ferrocyanide onto anion-exchange fiber prepared by radiation-induced graft polymerization. Radioisotopes 64, 219–228 (2015)CrossRef M. Sugiyama, S. Goto, T. Kojima, K. Fujiwara, T. Sugo, D. Umeno, K. Saito, Impregnation process of insoluble cobalt ferrocyanide onto anion-exchange fiber prepared by radiation-induced graft polymerization. Radioisotopes 64, 219–228 (2015)CrossRef
21.
go back to reference S. Goto, S. Umino, W. Amakai, K. Fujiwara, T. Sugo, T. Kojima, S. Kawai-Noma, D. Umeno, K. Saito, Impregnation structure of cobalt ferrocyanide microparticles by the polymer chain grafted onto nylon fiber. J. Nucl. Sci. Technol. 53, 1251–1255 (2016)CrossRef S. Goto, S. Umino, W. Amakai, K. Fujiwara, T. Sugo, T. Kojima, S. Kawai-Noma, D. Umeno, K. Saito, Impregnation structure of cobalt ferrocyanide microparticles by the polymer chain grafted onto nylon fiber. J. Nucl. Sci. Technol. 53, 1251–1255 (2016)CrossRef
22.
go back to reference J. Letho, A. Clearfield, The ion exchange of strontium on titanate Na4Ti9O20∙XH2O. J. Radioanal. Nucl. Chem. 118, 1–13 (1987)CrossRef J. Letho, A. Clearfield, The ion exchange of strontium on titanate Na4Ti9O20∙XH2O. J. Radioanal. Nucl. Chem. 118, 1–13 (1987)CrossRef
23.
go back to reference T. Harayama, S. Umino, S. Uchiyama, M. Sugiyama, K. Fujiwara, T. Sugo, S. Asai, T. Kojima, D. Umeno, K. Saito, Preparation of adorptive fibers for removal of strontium from seawater. Bull. Soc. Sea Water Sci. Jpn. 66, 295–300 (2012) T. Harayama, S. Umino, S. Uchiyama, M. Sugiyama, K. Fujiwara, T. Sugo, S. Asai, T. Kojima, D. Umeno, K. Saito, Preparation of adorptive fibers for removal of strontium from seawater. Bull. Soc. Sea Water Sci. Jpn. 66, 295–300 (2012)
24.
go back to reference S. Umino, M. Kono, K. Fujiwara, T. Sugo, S. Kawai-Noma, D. Umeno, K. Saito, Selection of scheme for impregnation of sodium titanate onto ion-exchange fibers for radioactive strontium removal from seawater. Bull. Soc. Sea Water Sci. Jpn. 68, 89–93 (2014) S. Umino, M. Kono, K. Fujiwara, T. Sugo, S. Kawai-Noma, D. Umeno, K. Saito, Selection of scheme for impregnation of sodium titanate onto ion-exchange fibers for radioactive strontium removal from seawater. Bull. Soc. Sea Water Sci. Jpn. 68, 89–93 (2014)
25.
go back to reference Y. Nakatani, S. Umino, M. Sugiyama, K. Fujiwara, T. Sugo, T. Kojima, D. Umeno, K. Saito, Impregnation of hydrous titanium oxide onto cation-exchange polymer chain grafted onto nylon fiber. Bull. Soc. Sea Water Sci. Jpn. 68, 196–201 (2014) Y. Nakatani, S. Umino, M. Sugiyama, K. Fujiwara, T. Sugo, T. Kojima, D. Umeno, K. Saito, Impregnation of hydrous titanium oxide onto cation-exchange polymer chain grafted onto nylon fiber. Bull. Soc. Sea Water Sci. Jpn. 68, 196–201 (2014)
26.
go back to reference M. Kono, S. Umino, K. Fujiwara, T. Sugo, T. Kojima, D. Umeno, K. Saito, Repeated deposition of titanium compounds onto 6-nylon fiber for removal of strontium from seawater. Bull. Soc. Sea Water Sci. Jpn. 68, 258–263 (2014) M. Kono, S. Umino, K. Fujiwara, T. Sugo, T. Kojima, D. Umeno, K. Saito, Repeated deposition of titanium compounds onto 6-nylon fiber for removal of strontium from seawater. Bull. Soc. Sea Water Sci. Jpn. 68, 258–263 (2014)
27.
go back to reference M. Kono, S. Umino, S.I. Goto, K. Fujiwara, T. Sugo, T. Kojima, S. Kawai-Noma, D. Umeno, K. Saito, Preparation of adsorptive fiber by a combination of peroxo complex of titanium anion and DMAPAA-grafted fiber for the removal of strontium from seawater. Bull. Soc. Sea Water Sci. Jpn. 69, 90–97 (2015) M. Kono, S. Umino, S.I. Goto, K. Fujiwara, T. Sugo, T. Kojima, S. Kawai-Noma, D. Umeno, K. Saito, Preparation of adsorptive fiber by a combination of peroxo complex of titanium anion and DMAPAA-grafted fiber for the removal of strontium from seawater. Bull. Soc. Sea Water Sci. Jpn. 69, 90–97 (2015)
28.
go back to reference M. Katagiri, M. Kono, S.I. Goto, K. Fujiwara, T. Sugo, S. Kawai-Noma, D. Umeno, K. Saito, Impregnation of sodium titanate onto DMAPAA-grafted fiber under mild reaction conditions and its strontium removal performance from seawater. Bull. Soc. Sea Water Sci. Jpn. 69, 270–276 (2015) M. Katagiri, M. Kono, S.I. Goto, K. Fujiwara, T. Sugo, S. Kawai-Noma, D. Umeno, K. Saito, Impregnation of sodium titanate onto DMAPAA-grafted fiber under mild reaction conditions and its strontium removal performance from seawater. Bull. Soc. Sea Water Sci. Jpn. 69, 270–276 (2015)
29.
go back to reference S. Naruke, S.I. Goto, M. Katagiri, K. Fujiwara, T. Suto, S. Kawai-Noma, D. Umeno, K. Saito, Determination of composition and strontium-binding ratio of sodium titanate impregnated onto DMAPAA-grafted fiber. Bull. Soc. Sea Water Sci. Jpn. 70, 364–368 (2016) S. Naruke, S.I. Goto, M. Katagiri, K. Fujiwara, T. Suto, S. Kawai-Noma, D. Umeno, K. Saito, Determination of composition and strontium-binding ratio of sodium titanate impregnated onto DMAPAA-grafted fiber. Bull. Soc. Sea Water Sci. Jpn. 70, 364–368 (2016)
30.
go back to reference T. Yoshikawa, D. Umeno, K. Saito, T. Sugo, High-performance collection of palladium ions in acidic media using nucleic-acid-base-immobilized porous hollow-fiber membranes. J. Membr. Sci. 307, 82–87 (2008)CrossRef T. Yoshikawa, D. Umeno, K. Saito, T. Sugo, High-performance collection of palladium ions in acidic media using nucleic-acid-base-immobilized porous hollow-fiber membranes. J. Membr. Sci. 307, 82–87 (2008)CrossRef
31.
go back to reference T. Sasaki, K. Fujiwara, T. Sugo, S. Kawai-Noma, D. Umeno, K. Saito, Ruthenium removal from water using nucleic-acid base-immobilized fibers. Bull. Soc. Sea Water Sci. Jpn. 69, 98–104 (2015) T. Sasaki, K. Fujiwara, T. Sugo, S. Kawai-Noma, D. Umeno, K. Saito, Ruthenium removal from water using nucleic-acid base-immobilized fibers. Bull. Soc. Sea Water Sci. Jpn. 69, 98–104 (2015)
32.
go back to reference M. Sugiyama, K. Ikeda, D. Umeno, K. Saito, T. Kikuchi, K. Ando, Removal of urea from water using urease-immobilized fibers. J. Chem. Eng. Jpn. 46, 509–513 (2013)CrossRef M. Sugiyama, K. Ikeda, D. Umeno, K. Saito, T. Kikuchi, K. Ando, Removal of urea from water using urease-immobilized fibers. J. Chem. Eng. Jpn. 46, 509–513 (2013)CrossRef
33.
go back to reference S. Kawashima, M. Sugiyama, K. Fujiwara, T. Sugo, T. Kikuchi, F. Koide, H. Kanoh, S. Kawai-Noma, D. Umeno, K. Saito, Preparation of catalase-immobilized and palladium-impregnated fibers for rapid decomposition of hydroperoxide in water. Radioisotopes 64, 501–507 (2015)CrossRef S. Kawashima, M. Sugiyama, K. Fujiwara, T. Sugo, T. Kikuchi, F. Koide, H. Kanoh, S. Kawai-Noma, D. Umeno, K. Saito, Preparation of catalase-immobilized and palladium-impregnated fibers for rapid decomposition of hydroperoxide in water. Radioisotopes 64, 501–507 (2015)CrossRef
34.
go back to reference K. Saito, T. Miyauchi, Chemical forms of uranium in artificial seawater. J. Nucl. Sci. Technol. 19, 145–150 (1982)CrossRef K. Saito, T. Miyauchi, Chemical forms of uranium in artificial seawater. J. Nucl. Sci. Technol. 19, 145–150 (1982)CrossRef
35.
go back to reference K. Saito, T. Miyauchi, Diffusivity of uranium in artificial seawater. Kagaku Kogaku Ronbunsyu 7, 545–548 (1981)CrossRef K. Saito, T. Miyauchi, Diffusivity of uranium in artificial seawater. Kagaku Kogaku Ronbunsyu 7, 545–548 (1981)CrossRef
36.
go back to reference R.V. Davies, J. Kennedy, T.W. Mciloy, R. Spence, K.M. Hill, Extraction of uranium from seawater. Nature 203, 1110–1115 (1964)CrossRef R.V. Davies, J. Kennedy, T.W. Mciloy, R. Spence, K.M. Hill, Extraction of uranium from seawater. Nature 203, 1110–1115 (1964)CrossRef
37.
go back to reference N. Ogata, Review on recovery of uranium from seawater. Bull. Soc. Sea Water Sci. Jpn. 34, 3–12 (1980) N. Ogata, Review on recovery of uranium from seawater. Bull. Soc. Sea Water Sci. Jpn. 34, 3–12 (1980)
38.
go back to reference M. Kanno. MMAJ project for the extraction of uranium from seawater. in Proceedings of and International Meeting Recovery Uranium from Seawater, vol. 12 (1983) M. Kanno. MMAJ project for the extraction of uranium from seawater. in Proceedings of and International Meeting Recovery Uranium from Seawater, vol. 12 (1983)
39.
go back to reference H.J. Schenk, L. Astheimer, E.G. Witte, K. Schwochau, Development of sorbers for the recovery of uranium from seawater. Part 1. Assessment of key parameters and screening studies of sorber materials. Sep. Sci. Technol. 17, 1293–1308 (1982)CrossRef H.J. Schenk, L. Astheimer, E.G. Witte, K. Schwochau, Development of sorbers for the recovery of uranium from seawater. Part 1. Assessment of key parameters and screening studies of sorber materials. Sep. Sci. Technol. 17, 1293–1308 (1982)CrossRef
40.
go back to reference L. Astheimer, H.J. Schenk, E.G. Witte, K. Schwochau, Development of sorbers for the recovery of uranium from seawater. Part 2. The accumulation of uranium from seawater by resins containing amidoxime and imidoxime functional groups. Sep. Sci. Technol. 18, 307–339 (1983)CrossRef L. Astheimer, H.J. Schenk, E.G. Witte, K. Schwochau, Development of sorbers for the recovery of uranium from seawater. Part 2. The accumulation of uranium from seawater by resins containing amidoxime and imidoxime functional groups. Sep. Sci. Technol. 18, 307–339 (1983)CrossRef
41.
go back to reference H. Nobukawa, M. Tamehiro, M. Kobayashi, H. Nakagawa, J. Sakakibara, N. Takagi, Development of floating type-extraction system of uranium from sea water using sea water current and wave power. 1. J. Shipbuild. Soc. Jpn. 165, 281–292 (1989) H. Nobukawa, M. Tamehiro, M. Kobayashi, H. Nakagawa, J. Sakakibara, N. Takagi, Development of floating type-extraction system of uranium from sea water using sea water current and wave power. 1. J. Shipbuild. Soc. Jpn. 165, 281–292 (1989)
42.
go back to reference H. Nobukawa, J. Michimoto, M. Kobayashi, H. Nakagawa, J. Sakakibara, N. Takagi, M. Tamehiro, Development of floating type-extraction system of uranium from sea water using sea water current and wave power. 2. J. Shipbuild. Soc. Jpn., 168, 319–328 (1990) H. Nobukawa, J. Michimoto, M. Kobayashi, H. Nakagawa, J. Sakakibara, N. Takagi, M. Tamehiro, Development of floating type-extraction system of uranium from sea water using sea water current and wave power. 2. J. Shipbuild. Soc. Jpn., 168, 319–328 (1990)
43.
go back to reference H. Nobukawa, M. Kitamura, M. Kobayashi, H. Nakagawa, N. Takagi, M. Tamehiro. Development of floating type-extraction system of uranium from sea water using sea current and wave power. 3. J. Shipbuild. Soc. Jpn. 172, 519–528 (1992) H. Nobukawa, M. Kitamura, M. Kobayashi, H. Nakagawa, N. Takagi, M. Tamehiro. Development of floating type-extraction system of uranium from sea water using sea current and wave power. 3. J. Shipbuild. Soc. Jpn. 172, 519–528 (1992)
44.
go back to reference H. Egawa, H. Harada. Recovery of uranium from sea water by using chelating resins containing amidoxime groups. Nippon Kagaku Kaishi. 958–959 (1979) H. Egawa, H. Harada. Recovery of uranium from sea water by using chelating resins containing amidoxime groups. Nippon Kagaku Kaishi. 958–959 (1979)
45.
go back to reference H. Egawa, H. Harada, T. Nonaka. Preparation of adsorption resins for uranium in seawater. Nippon Kagaku Kaishi, 11 1767–1772 (1980) H. Egawa, H. Harada, T. Nonaka. Preparation of adsorption resins for uranium in seawater. Nippon Kagaku Kaishi, 11 1767–1772 (1980)
46.
go back to reference H. Egawa, H. Harada, T. Shuto. Recovery of uranium from sea water by the use of chelating resins containing amidoxime groups. Nippon Kagaku Kaishi. 1773–1776 (1980) H. Egawa, H. Harada, T. Shuto. Recovery of uranium from sea water by the use of chelating resins containing amidoxime groups. Nippon Kagaku Kaishi. 1773–1776 (1980)
47.
go back to reference H. Egawa, N. Kabay, S. Saigo, T. Nonaka, T. Shuto, Low-cross-linked porous chelating resins containing amidoxime groups. Bull. Soc. Sea Water Sci. Jpn. 45, 324–332 (1991) H. Egawa, N. Kabay, S. Saigo, T. Nonaka, T. Shuto, Low-cross-linked porous chelating resins containing amidoxime groups. Bull. Soc. Sea Water Sci. Jpn. 45, 324–332 (1991)
48.
go back to reference T. Hirotsu, S. Katoh, K. Sugasaka, M. Seno, T. Itagaki, Adsorption equilibrium of uranium from aqueous [UO2(CO3)3]4− solutions on a polymer bearing amidoxime groups. J. Chem. Soc. Dalton Trans. 9, 1983–1986 (1986) T. Hirotsu, S. Katoh, K. Sugasaka, M. Seno, T. Itagaki, Adsorption equilibrium of uranium from aqueous [UO2(CO3)3]4− solutions on a polymer bearing amidoxime groups. J. Chem. Soc. Dalton Trans. 9, 1983–1986 (1986)
49.
go back to reference S. Katoh, K. Sugasaka, K. Sakane, N. Takai, H. Takahashi, Y. Umezawa, K. Itagaki, Preparation of fibrous adsorbent containing amidoxime group and adsorption property for uranium. Nippon Kagaku Kaishi. 1449–1454 (1982) S. Katoh, K. Sugasaka, K. Sakane, N. Takai, H. Takahashi, Y. Umezawa, K. Itagaki, Preparation of fibrous adsorbent containing amidoxime group and adsorption property for uranium. Nippon Kagaku Kaishi. 1449–1454 (1982)
50.
go back to reference S. Katoh, K. Sugawaka, K. Sakane, N. Takai, H. Takahashi, Y. Umezawa, K. Itagaki, Enhancement of the adsorptive property of amidoxime-group-containing fiber by alkaline treatment. Nippon Kagaku Kaishi. 1455–1459 (1982) S. Katoh, K. Sugawaka, K. Sakane, N. Takai, H. Takahashi, Y. Umezawa, K. Itagaki, Enhancement of the adsorptive property of amidoxime-group-containing fiber by alkaline treatment. Nippon Kagaku Kaishi. 1455–1459 (1982)
51.
go back to reference Y. Kobuke, I. Tabushi, T. Aoki, T. Kamaishi, I. Hagiwara, Composite fiber adsorbent for rapid uptake of uranyl from seawater. Ind. Eng. Chem. Res. 27, 1461–1466 (1988)CrossRef Y. Kobuke, I. Tabushi, T. Aoki, T. Kamaishi, I. Hagiwara, Composite fiber adsorbent for rapid uptake of uranyl from seawater. Ind. Eng. Chem. Res. 27, 1461–1466 (1988)CrossRef
52.
go back to reference Y. Kobuke, H. Tanaka, H. Ogoshi, Imidedioxime as a significant component in so-called amidoxime resin for uranyl adsorption from seawater. Polym. J. 22, 179–182 (1990)CrossRef Y. Kobuke, H. Tanaka, H. Ogoshi, Imidedioxime as a significant component in so-called amidoxime resin for uranyl adsorption from seawater. Polym. J. 22, 179–182 (1990)CrossRef
53.
go back to reference T. Saito, S. Brown, S. Chatterjee, J. Kim, C. Tsouris, R.T. Mayes, L.-J. Kuo, G. Gill, Y. Oyola, C.J. Janke, S. Dai, Uranium recovery from seawater: development of fiber adsorbents prepared via atom-transfer radical polymerization. J. Mater. Chem. A 2, 14674–14681 (2014)CrossRef T. Saito, S. Brown, S. Chatterjee, J. Kim, C. Tsouris, R.T. Mayes, L.-J. Kuo, G. Gill, Y. Oyola, C.J. Janke, S. Dai, Uranium recovery from seawater: development of fiber adsorbents prepared via atom-transfer radical polymerization. J. Mater. Chem. A 2, 14674–14681 (2014)CrossRef
54.
go back to reference S. Brown, Y. Yue, L.-J. Kuo, N. Mehio, M. Li, G. Gill, C. Tsouris, R.T. Mayes, T. Saito, S. Dai, Uranium adsorbent fibers prepared by atom-transfer radical polymerization (ATRP) from poly(vinyl chloride)-co-chlorinated poly(vinyl chloride) (PVC-co-CPVC) fiber. Ind. Eng. Chem. Res. 55, 4139–4148 (2016)CrossRef S. Brown, Y. Yue, L.-J. Kuo, N. Mehio, M. Li, G. Gill, C. Tsouris, R.T. Mayes, T. Saito, S. Dai, Uranium adsorbent fibers prepared by atom-transfer radical polymerization (ATRP) from poly(vinyl chloride)-co-chlorinated poly(vinyl chloride) (PVC-co-CPVC) fiber. Ind. Eng. Chem. Res. 55, 4139–4148 (2016)CrossRef
55.
go back to reference T. Hori, K. Saito, S. Furusaki, T. Sugo, J. Okamoto, Synthesis of a hollow fiber type porous chelating resin containing the amidoxime group by radiation-induced graft polymerization for the uranium recovery. Nippon Kagaku Kaishi. 1792–1798 (1986) T. Hori, K. Saito, S. Furusaki, T. Sugo, J. Okamoto, Synthesis of a hollow fiber type porous chelating resin containing the amidoxime group by radiation-induced graft polymerization for the uranium recovery. Nippon Kagaku Kaishi. 1792–1798 (1986)
56.
go back to reference K. Saito, S. Yamada, S. Furusaki, T. Sugo, J. Okamoto, Characteristics of uranium adsorption by amidoxime membrane synthesized by radiation-induced graft polymerization. J. Membr. Sci. 34, 307–315 (1987) K. Saito, S. Yamada, S. Furusaki, T. Sugo, J. Okamoto, Characteristics of uranium adsorption by amidoxime membrane synthesized by radiation-induced graft polymerization. J. Membr. Sci. 34, 307–315 (1987)
57.
go back to reference T. Hori, K. Saito, S. Furusaki, T. Sugo, J. Okamoto, Adsorption equilibrium of uranium from seawater on chelating resin containing amidoxime group. Kagaku Kogaku Ronbunsyu 13, 795–800 (1987)CrossRef T. Hori, K. Saito, S. Furusaki, T. Sugo, J. Okamoto, Adsorption equilibrium of uranium from seawater on chelating resin containing amidoxime group. Kagaku Kogaku Ronbunsyu 13, 795–800 (1987)CrossRef
58.
go back to reference K. Saito, T. Hori, S. Furusaki, T. Sugo, J. Okamoto, Porous amidoxime-group-containing membrane for the recovery of uranium from seawater. Ind. Eng. Chem. Res. 26, 1977–1981 (1987)CrossRef K. Saito, T. Hori, S. Furusaki, T. Sugo, J. Okamoto, Porous amidoxime-group-containing membrane for the recovery of uranium from seawater. Ind. Eng. Chem. Res. 26, 1977–1981 (1987)CrossRef
59.
go back to reference T. Hori, K. Saito, S. Furusaki, T. Sugo, J. Okamoto. The effect of alkaline and acidic treatment of the properties of amidoxime resin synthesized by radiation-induced graft polymerization. Nippon Kagaku Kaishi. 1607–1611 (1988) T. Hori, K. Saito, S. Furusaki, T. Sugo, J. Okamoto. The effect of alkaline and acidic treatment of the properties of amidoxime resin synthesized by radiation-induced graft polymerization. Nippon Kagaku Kaishi. 1607–1611 (1988)
60.
go back to reference K. Uezu, K. Saito, T. Hori, S. Furusaki, T. Sugo, J. Okamoto, Performance of fixed-bed charged with chelating resin of capillary fiber form for recovery of uranium from seawater. Nihon Genshiryoku Gakkaishi 30, 359–364 (1988) K. Uezu, K. Saito, T. Hori, S. Furusaki, T. Sugo, J. Okamoto, Performance of fixed-bed charged with chelating resin of capillary fiber form for recovery of uranium from seawater. Nihon Genshiryoku Gakkaishi 30, 359–364 (1988)
61.
go back to reference K. Saito, K. Uezu, T. Hori, S. Furusaki, T. Sugo, J. Okamoto, Recovery of uranium from seawater using amidoxime hollow fibers. AIChE J. 34, 411–416 (1988)CrossRef K. Saito, K. Uezu, T. Hori, S. Furusaki, T. Sugo, J. Okamoto, Recovery of uranium from seawater using amidoxime hollow fibers. AIChE J. 34, 411–416 (1988)CrossRef
62.
go back to reference K. Uezu, K. Saito, S. Furusaki, T. Sugo, J. Okamoto, Application of adsorption unit charged with amidoxime capillary fibers to recovery of uranium from seawater utilizing flow of ocean current. Nihon Genshiryoku Gakkaishi 32, 919–924 (1990) K. Uezu, K. Saito, S. Furusaki, T. Sugo, J. Okamoto, Application of adsorption unit charged with amidoxime capillary fibers to recovery of uranium from seawater utilizing flow of ocean current. Nihon Genshiryoku Gakkaishi 32, 919–924 (1990)
63.
go back to reference K. Saito, T. Yamaguchi, K. Uezu, S. Furusaki, T. Sugo, J. Okamoto, Optimum preparation conditions of amidoxime hollow fiber synthesized by radiation-induced grafting. J. Appl. Polym. Sci. 39, 2153–2163 (1990)CrossRef K. Saito, T. Yamaguchi, K. Uezu, S. Furusaki, T. Sugo, J. Okamoto, Optimum preparation conditions of amidoxime hollow fiber synthesized by radiation-induced grafting. J. Appl. Polym. Sci. 39, 2153–2163 (1990)CrossRef
64.
go back to reference T. Takeda, K. Saito, K. Uezu, S. Furusaki, T. Sugo, J. Okamoto, Adsorption and elution in hollow-fiber-packed bed for recovery of uranium from seawater. Ind. Eng. Chem. Res. 30, 185–190 (1991)CrossRef T. Takeda, K. Saito, K. Uezu, S. Furusaki, T. Sugo, J. Okamoto, Adsorption and elution in hollow-fiber-packed bed for recovery of uranium from seawater. Ind. Eng. Chem. Res. 30, 185–190 (1991)CrossRef
65.
go back to reference K. Sekiguchi, K. Saito, S. Konishi, S. Furusaki, T. Sugo, H. Nobukawa, Effect of seawater temperature on uranium recovery from seawater using amidoxime adsorbents. Ind. Eng. Chem. Res. 33, 662–666 (1994)CrossRef K. Sekiguchi, K. Saito, S. Konishi, S. Furusaki, T. Sugo, H. Nobukawa, Effect of seawater temperature on uranium recovery from seawater using amidoxime adsorbents. Ind. Eng. Chem. Res. 33, 662–666 (1994)CrossRef
66.
go back to reference A. Katakai, N. Seko, T. Kawakami, K. Saito, T. Sugo, Adsorption of uranium in sea water using amidoxime adsorbents prepared by radiation-induced cografting. Nihon Genshiryoku Gakkaishi 40, 878–880 (1998) A. Katakai, N. Seko, T. Kawakami, K. Saito, T. Sugo, Adsorption of uranium in sea water using amidoxime adsorbents prepared by radiation-induced cografting. Nihon Genshiryoku Gakkaishi 40, 878–880 (1998)
67.
go back to reference A. Katakai, N. Seko, T. Kawakami, K. Saito, T. Sugo, Adsorption performance in sea water of amidoxime nonwoven fabrics prepared by radiation-induced cografting of acrylonitrile and methacrylic acid. Bull. Soc. Sea Water Sci. Jpn. 53, 180–184 (1999) A. Katakai, N. Seko, T. Kawakami, K. Saito, T. Sugo, Adsorption performance in sea water of amidoxime nonwoven fabrics prepared by radiation-induced cografting of acrylonitrile and methacrylic acid. Bull. Soc. Sea Water Sci. Jpn. 53, 180–184 (1999)
68.
go back to reference T. Kawai, K. Saito, K. Sugita, T. Kawakami, J. Kanno, A. Katakai, N. Seko, T. Sugo, Preparation of hydrophilic amidoxime fibers by cografting acrylonitrile and methacrylic acid from an optimized monomer composition. Radiat. Phys. Chem. 59, 405–411 (2000)CrossRef T. Kawai, K. Saito, K. Sugita, T. Kawakami, J. Kanno, A. Katakai, N. Seko, T. Sugo, Preparation of hydrophilic amidoxime fibers by cografting acrylonitrile and methacrylic acid from an optimized monomer composition. Radiat. Phys. Chem. 59, 405–411 (2000)CrossRef
69.
go back to reference T. Kawai, K. Saito, K. Sugita, A. Katakai, N. Seko, T. Sugo, J. Kanno, T. Kawakami, Comparison of amidoxime adsorbents prepared by cografting of methacrylic acid and 2-hydroxyethyl methacrylate with acrylonitrile onto polyethylene. Ind. Eng. Chem. Res. 39, 2910–2915 (2000)CrossRef T. Kawai, K. Saito, K. Sugita, A. Katakai, N. Seko, T. Sugo, J. Kanno, T. Kawakami, Comparison of amidoxime adsorbents prepared by cografting of methacrylic acid and 2-hydroxyethyl methacrylate with acrylonitrile onto polyethylene. Ind. Eng. Chem. Res. 39, 2910–2915 (2000)CrossRef
70.
go back to reference N. Seko, A. Katakai, S. Hasegawa, M. Tamada, N. Kasai, H. Takeda, T. Sugo, K. Saito, Aquaculture of uranium in seawater by a fabric-adsorbent submerged system. Nucl. Technol. 144, 274–278 (2003)CrossRef N. Seko, A. Katakai, S. Hasegawa, M. Tamada, N. Kasai, H. Takeda, T. Sugo, K. Saito, Aquaculture of uranium in seawater by a fabric-adsorbent submerged system. Nucl. Technol. 144, 274–278 (2003)CrossRef
71.
go back to reference D. Kudo, Y. Matuzaki, S. Kawai-Noma, D. Umeno, K. Saito, Preparation of anion-exchange fiber with radiation-induced emulsion graft polymerization for rapid protein purification. Radioisotopes 66, 1–7 (2017)CrossRef D. Kudo, Y. Matuzaki, S. Kawai-Noma, D. Umeno, K. Saito, Preparation of anion-exchange fiber with radiation-induced emulsion graft polymerization for rapid protein purification. Radioisotopes 66, 1–7 (2017)CrossRef
72.
go back to reference N. Seko, L.T. Bang, M. Tamada, Syntheses of amine-type adsorbents with emulsion graft polymerization of glycidyl methacrylate. Nucl. Instrum. Methods Phys. Res. B 265, 146–149 (2007)CrossRef N. Seko, L.T. Bang, M. Tamada, Syntheses of amine-type adsorbents with emulsion graft polymerization of glycidyl methacrylate. Nucl. Instrum. Methods Phys. Res. B 265, 146–149 (2007)CrossRef
73.
go back to reference N. Seko, N.T.Y. Ninh, M. Tamada, Emulsion grafting of glycidyl methacrylate onto polyethylene fiber. Radiat. Phys. Chem. 79, 22–26 (2010)CrossRef N. Seko, N.T.Y. Ninh, M. Tamada, Emulsion grafting of glycidyl methacrylate onto polyethylene fiber. Radiat. Phys. Chem. 79, 22–26 (2010)CrossRef
74.
go back to reference S. Sugiyama, S. Tsuneda, K. Saito, S. Furusaki, T. Sugo, K. Makuuchi, Attachment of sulfonic acid groups to various shapes of polyethylene, polypropylene and polytetrafluoroethylene by radiation-induced graft polymerization. React. Polym. 21, 187–191 (1993)CrossRef S. Sugiyama, S. Tsuneda, K. Saito, S. Furusaki, T. Sugo, K. Makuuchi, Attachment of sulfonic acid groups to various shapes of polyethylene, polypropylene and polytetrafluoroethylene by radiation-induced graft polymerization. React. Polym. 21, 187–191 (1993)CrossRef
75.
go back to reference S. Tsuneda, K. Saito, S. Furusaki, T. Sugo, K. Makuuchi, Simple introduction of sulfonic acid group onto polyethylene by radiation-induced cografting of sodium styrenesulfonate with hydrophilic monomers. Ind. Eng. Chem. Res. 32, 1464–1470 (1993)CrossRef S. Tsuneda, K. Saito, S. Furusaki, T. Sugo, K. Makuuchi, Simple introduction of sulfonic acid group onto polyethylene by radiation-induced cografting of sodium styrenesulfonate with hydrophilic monomers. Ind. Eng. Chem. Res. 32, 1464–1470 (1993)CrossRef
76.
go back to reference S. Tsuneda, K. Saito, H. Mitsuhara, T. Sugo, Novel ion-exchange membranes for electrodialysis prepared by radiation-induced graft polymerization. J. Electrochem. Soc. 142, 3659–3663 (1995)CrossRef S. Tsuneda, K. Saito, H. Mitsuhara, T. Sugo, Novel ion-exchange membranes for electrodialysis prepared by radiation-induced graft polymerization. J. Electrochem. Soc. 142, 3659–3663 (1995)CrossRef
77.
go back to reference K. Miyoshi, T. Miyazawa, N. Sato, D. Umeno, K. Saito, T. Nagatani, N. Yoshikawa, Development of novel ion-exchange membranes for electrodialysis of seawater by electron-beam-induced graft polymerization (I) Selection of trunk polymeric films. Bull. Sea Water Sci. Jpn. 63, 167–174 (2009) K. Miyoshi, T. Miyazawa, N. Sato, D. Umeno, K. Saito, T. Nagatani, N. Yoshikawa, Development of novel ion-exchange membranes for electrodialysis of seawater by electron-beam-induced graft polymerization (I) Selection of trunk polymeric films. Bull. Sea Water Sci. Jpn. 63, 167–174 (2009)
78.
go back to reference T. Miyazawa, Y. Asari, K. Miyoshi, D. Umeno, K. Saito, T. Nagatani, N. Yoshikawa, Development of novel ion-exchange membranes for electrodialysis of seawater by electron-beam-induced graft polymerization (II) Graft polymerization of vinyl benzyltrimethylammonium chloride and sodium styrenesulfonate onto nylon-6 film. Bull. Soc. Sea Water Sci. Jpn. 63, 175–183 (2009) T. Miyazawa, Y. Asari, K. Miyoshi, D. Umeno, K. Saito, T. Nagatani, N. Yoshikawa, Development of novel ion-exchange membranes for electrodialysis of seawater by electron-beam-induced graft polymerization (II) Graft polymerization of vinyl benzyltrimethylammonium chloride and sodium styrenesulfonate onto nylon-6 film. Bull. Soc. Sea Water Sci. Jpn. 63, 175–183 (2009)
79.
go back to reference Y. Asari, T. Miyazawa, K. Miyoshi, D. Umeno, K. Saito, T. Nagatani, N, Yoshikawa, Development of novel ion-exchange membranes for electrodialysis of seawater prepared by electron-beam-induced graft polymerization (lll) Co-graft polymerization of glycidyl methacrylate and divinylbenzene onto high-density polyethylene film. Bull. Soc. Sea Water Sci. Jpn. 63, 387–394 (2009) Y. Asari, T. Miyazawa, K. Miyoshi, D. Umeno, K. Saito, T. Nagatani, N, Yoshikawa, Development of novel ion-exchange membranes for electrodialysis of seawater prepared by electron-beam-induced graft polymerization (lll) Co-graft polymerization of glycidyl methacrylate and divinylbenzene onto high-density polyethylene film. Bull. Soc. Sea Water Sci. Jpn. 63, 387–394 (2009)
80.
go back to reference T. Miyazawa, Y. Asari, K. Miyoshi, D. Umeno, K. Saito, T. Nagatani, N. Yoshikawa, R. Motokawa, S. Koizumi, Development of novel ion-exchange membranes for electrodialysis of seawater by electron-beam-induced graft polymerization (lV) polymeric structures of cation-exchange membranes based on nylon-6 film. Bull. Soc. Sea Water Sci. Jpn. 64, 360–365 (2010) T. Miyazawa, Y. Asari, K. Miyoshi, D. Umeno, K. Saito, T. Nagatani, N. Yoshikawa, R. Motokawa, S. Koizumi, Development of novel ion-exchange membranes for electrodialysis of seawater by electron-beam-induced graft polymerization (lV) polymeric structures of cation-exchange membranes based on nylon-6 film. Bull. Soc. Sea Water Sci. Jpn. 64, 360–365 (2010)
81.
go back to reference K. Ishimori, T. Miyazawa, Y. Asari, D. Miyoshi, D. Umeno, K. Saito, K. Mizuguchi, T. Aritomo, K. Yoshie, Preparation of mono-valent cation selective cation-exchange membranes for electrodialysis of seawater by electron-beam-induced graft polymerization. Bull. Soc. Sea Water Sci. Jpn. 65, 35–41 (2011) K. Ishimori, T. Miyazawa, Y. Asari, D. Miyoshi, D. Umeno, K. Saito, K. Mizuguchi, T. Aritomo, K. Yoshie, Preparation of mono-valent cation selective cation-exchange membranes for electrodialysis of seawater by electron-beam-induced graft polymerization. Bull. Soc. Sea Water Sci. Jpn. 65, 35–41 (2011)
82.
go back to reference N. Yoshikawa, Report of research institute of salt and sea water science. Salt Ind. Cent. Jpn. 10, 25–28 (2008) N. Yoshikawa, Report of research institute of salt and sea water science. Salt Ind. Cent. Jpn. 10, 25–28 (2008)
83.
go back to reference K. Miyazaki, N. Shoji, Y. Asari, K. Miyoshi, D. Umeno, K. Saito, Preparation of heat- and alkali-resistant anion-exchange membranes by electron-beam-induced graft polymerization of bromo-butyl styrene onto polyethylene film. Membrane (Maku) 35, 305–310 (2010)CrossRef K. Miyazaki, N. Shoji, Y. Asari, K. Miyoshi, D. Umeno, K. Saito, Preparation of heat- and alkali-resistant anion-exchange membranes by electron-beam-induced graft polymerization of bromo-butyl styrene onto polyethylene film. Membrane (Maku) 35, 305–310 (2010)CrossRef
84.
go back to reference Y. Asai, N. Shoji, K. Miyoshi, D. Umeno, K. Saito, Electrodialysis of sulfuric acid with cation-exchange membranes prepared by electron-beam-induced graft polymerization. J. Ion Exch. 22, 53–57 (2011)CrossRef Y. Asai, N. Shoji, K. Miyoshi, D. Umeno, K. Saito, Electrodialysis of sulfuric acid with cation-exchange membranes prepared by electron-beam-induced graft polymerization. J. Ion Exch. 22, 53–57 (2011)CrossRef
85.
go back to reference Y. Sekiya, Y. Shimoda, D. Umeno, K. Saito, G. Furumoto, H. Shirataki, N. Shinohara, N. Kubota, Preparation of cation-exchange particle designed for high-speed collection of proteins by radiation-induced graft polymerization. J. Ion Exch. 21, 29–34 (2010)CrossRef Y. Sekiya, Y. Shimoda, D. Umeno, K. Saito, G. Furumoto, H. Shirataki, N. Shinohara, N. Kubota, Preparation of cation-exchange particle designed for high-speed collection of proteins by radiation-induced graft polymerization. J. Ion Exch. 21, 29–34 (2010)CrossRef
86.
go back to reference T. Harayama, Y. Okamura, Y. Shimoda, D. Umeno, K. Saito, N. Shinohara, N. Kubota, Protein resolution in elution chromatography using novel cation-exchange polymer-brush-immobilized particles. J. Chem. Eng. Jpn. 45, 896–902 (2012)CrossRef T. Harayama, Y. Okamura, Y. Shimoda, D. Umeno, K. Saito, N. Shinohara, N. Kubota, Protein resolution in elution chromatography using novel cation-exchange polymer-brush-immobilized particles. J. Chem. Eng. Jpn. 45, 896–902 (2012)CrossRef
87.
go back to reference T. Someya, Y. Okamura, G. Wada, Y. Shimoda, D. Umeno, K. Saito, N. Shinohara, N. Kubota, Comparison of resolution of proteins in elution chromatography between cation-exchange polymer brush immobilized particle- and commercially available cation-exchange-bead-packed beds. J. Ion Exch. 24, 1–7 (2013)CrossRef T. Someya, Y. Okamura, G. Wada, Y. Shimoda, D. Umeno, K. Saito, N. Shinohara, N. Kubota, Comparison of resolution of proteins in elution chromatography between cation-exchange polymer brush immobilized particle- and commercially available cation-exchange-bead-packed beds. J. Ion Exch. 24, 1–7 (2013)CrossRef
88.
go back to reference Y. Shimoda, Y. Sekiya, D. Umeno, K. Saito, G. Furumoto, H. Shirataki, N. Shinohara, N. Kubota, Protein-binding characteristics of anion-exchange particles prepared by radiation-induced graft polymerization at low temperatures. J. Chem. Eng. Jpn. 46, 588–592 (2013)CrossRef Y. Shimoda, Y. Sekiya, D. Umeno, K. Saito, G. Furumoto, H. Shirataki, N. Shinohara, N. Kubota, Protein-binding characteristics of anion-exchange particles prepared by radiation-induced graft polymerization at low temperatures. J. Chem. Eng. Jpn. 46, 588–592 (2013)CrossRef
Metadata
Title
Revolution in the Form of Polymeric Adsorbents 2: Fibers, Films, and Particles
Authors
Kyoichi Saito
Kunio Fujiwara
Takanobu Sugo
Copyright Year
2018
Publisher
Springer Singapore
DOI
https://doi.org/10.1007/978-981-10-8563-5_4

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