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Warianty tytułu
Ion exchange properties of products obtained from natural sources of zirconium
Języki publikacji
Abstrakty
W pracy przedstawiono badania literaturowe właściwości jonowymiennych oksywodorotlenku cyrkonu i jego pochodnych oraz ich wykorzystanie w procesach usuwania anionów i kationów z ciekłych odpadów technologicznych.
The paper presents the literature investigations of the ion exchange properties of hydrous zirconium oxide and its derivatives and their use in processes of removing anions and cations from technological wastewaters.
Wydawca
Czasopismo
Rocznik
Tom
Strony
43--50
Opis fizyczny
Bibliogr. 52 poz., rys.
Twórcy
autor
- Instytut Nowych Syntez Chemicznych, Oddział Chemii Nieorganicznej „IChN” w Gliwicach
autor
- Instytut Nowych Syntez Chemicznych, Oddział Chemii Nieorganicznej „IChN” w Gliwicach
autor
- Instytut Nowych Syntez Chemicznych, Oddział Chemii Nieorganicznej „IChN” w Gliwicach
Bibliografia
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- Cichy B., Bunikowska B., Kwiecień J., Kołodziejczyk J., 2003: Zirconium Hydroxide – Properties, Preparation and Use. Polish Journal of Chemical Technology, 5, 3, 55.
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- US 20040141904A1, Patent. Clarke R., Butler D., 2004: Compositions and methods for anion absorbent metal hydroxide.
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- https://commons.wikimedia.org/w/index.php?curid=10441268 (b) by Rob Lavinsky, iRocks.com – CC-BY-SA-3.0, dostęp 25.07.2017.
- https://commons.wikimedia.org/w/index.php?curid=10477463 (a)
- https://commons.wikimedia.org/w/index.php?curid=11376454 (c) by Materialscientist - Own work, CC BY-SA 3.0, dostęp 25.07.2017.
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- Ínan S., Tel H., Altaş Y., 2006: Sorption studies of strontium on hydrous zirconium dioxide. Journal of Radioanalytical and Nuclear Chemistry, 267(3), 615.
- Inoue Y., Tani K., Suzuki Y., 1995: Evaluation of hydrous zirconium oxide loaded porous polymer resin for ion chromatographic separation of carboxylic acids. Chromatographia, 40, 577.
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- Knote A., Kruger H. G., Selve S., Kups Th., 2007: Metal-ceramic composite layers on stainless steel through the combination of electrophoretic deposition and galvanic processes. J.Mater. Sci., 42, 4545.
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- Lee S., Lee B. C., Lee K. Y., Lee S. H., Iwamoto M., 2007(b): Phosphate sorption characteristics of zirconium meso-structure synthesized under different conditions. Environmental Technology, 28, 785.
- Lewicki A., Paryjczak T., Rynkowski J., 1996: Dwutlenek cyrkonu w katalizie. Właściwości i zastosowania. Wiadomości chemiczne, 50, 11-12.
- Minczewski J., Marczenko Z., 1985: Chemia analityczna. Analiza ilościowa – tom 2, PWN, Warszawa.
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- Monopoli A., Nacci A., Calo V., Ciminale F., Cotugno P., Mangone A., Giannossa L., Azzone P., Cioffi N., 2010: Palladium/ Zirconium Oxide Nanocomposite as a Highly Recyclable catalyst for C-C Coupling Reactions In Water. Molecules, 15, 4511.
- Palmer D., Machesky M., Benezeth P., Wesolowski D., Anovitz L., Deshon J., 2009: Adsorption of Ions on Zirconium Oxide Surfaces from Aqueous Solutions at High Temperatures. J.Solution Chem., 38, 907.
- Qureshi S. Z., Ahmad I., Khayer M. R., 1999: Synthesis and physical studies on a new anion exchange material: zirconium(IV) ethylenediamine and its application to the separation of MoO42- from other anionic species. Ann. Chim. Sci. Mat., 24, 531.
- Reddy J., Sayari A., 1996: Nanoporous zirconium oxide preparated using the supramolecular templating approach. Catalysis Letters, 38, 219.
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- Rodrigues L. A., Maschio L. J., da Silva R. E., 2010(b): Adsorption of Cr(VI) from aqueous solution by hydrous zirconium oxide. Journal of Hazardous Materials, 173, 630.
- Romanova R., Petrova E., 2006: Phase Composition of Aluminum-Zirconium Oxide Nanocrystals Prepared by Electrochemical Coprecipitation. Russian Journal of Physical Chemistry, 80, 974.
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- Saraidarov T., Reisfeld R., 2003: Synthesis and Characterization of Lead Sulfide Nanoparticles in Zirconia – Silica – Urethane Thin Films Prepared by the Sol-Gel Process. Journal of Sol-Gel Science and Technology, 26, 533.
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- Suzuki T. M., Bomani J., Matsunaga H., Yokoyama T., 2000: Preparation of porous resin loaded with crystalline hydrobus zirconium oxide and its application to removal of arsenic. Reactive & Functional Polymers, 43, 165;
- Tanuma T., Okamoto H., Ohnishi K., Morikawa S. Suzuki T., 2009: Activated zirconium oxide catalysts to synthesize dichloropentafluoropropane by the reaction of dichlorofluoromethane with tetrafluoroethylene. Applied Catalysis, 359, 1.
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- US 5948265 A, Patent. Wakamatsu H., Sakurai M., Murakami T., Kumoi S., 1999: Ion-exchanger, process for production thereof, and process for removal of multiply charged anions employing the ion-exchanger.
- US 6077809, Patent. Suzuki T., Matsunaga H, Yokoyama T., 2000: Method for the preparation of a high-porosity adsorbent loaded with crystalline hydrous zirconium oxide.
- Vaivars G., Mokrani T., Hendricks N., Linkov V., 2004: Inorganic membranes based on zirconium phosphate for fuel cell. J. Solid State Electrochem., 8, 882.
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- Zheng Y. M., Lim S. F., Chen J. P., 2009: Preparation and characterization of zirconium-based magnetic sorbent for arsenate removal. Journal of Colloid and Interface Science, 338, 22.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-3c66da5f-9ab3-4c63-8034-0ee65b4450a9