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Titlebook: Innovative Polymeric Adsorbents; Radiation-Induced Gr Kyoichi Saito,Kunio Fujiwara,Takanobu Sugo Book 2018 Springer Nature Singapore Pte Lt

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Scientific Findings on Graft Chains, porous membrane, the permeability of the liquid through the porous membrane reflects the static and dynamic behavior of the graft chain. Also, the graft-chain phase diffusion of metal ions and proteins occurs, driven by the gradient of the number of ions and proteins bound by the graft chain.
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Revolution in the Form of Polymeric Adsorbents 1: Porous Hollow-Fiber Membranes and Porous Sheets,ing of proteins via multipoints in the polymer brush is applied to the immobilization of an enzyme at a high density, leading to high activity in enzyme reactions such as the quantitative hydrolysis of 4 M urea solution.
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Commercial Products by Radiation-Induced Graft Polymerization, gamma-ray-irradiated fibers can be used as trunk polymers in continuous and batch modes, respectively. Many polymeric adsorbents of various forms and components can be produced by radiation-induced graft polymerization.
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Revolution in the Form of Polymeric Adsorbents 2: Fibers, Films, and Particles,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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https://doi.org/10.1007/978-981-10-8563-5Polymeric adsorbent; Radiation-induced graft polymerization; Rare-metal collection; Radionuclide remova
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