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Statistical Approach to the Transformation of Fly Ash into Zeolites


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AMRHEIN CH., HAGINA G.H., KIM T.S., MOSHER P.A., GAGAJENA R.C., AMANIOS T., TORRE DE LA L., 1996: Synthesis and properties of zeolites from fly ash. Environmental Science and Technology 30, 735-742.10.1021/es940482cSearch in Google Scholar

ARMSTRONG J.A., DANN S.E., 2000: Investigation of zeolite scales formed in the Bayer process. Microporous Mesoporous Materials 41, 89-97.10.1016/S1387-1811(00)00276-6Search in Google Scholar

BAERLOCHER CH., MEIER W.M., OLSON D.H., 2001: Atlas of zeolite framework types. Str. Comm. IZA. 5th Revised Edition, Elsevier, London Boston Singapore Sydney Toronto Wellington.10.1016/B978-044450701-3/50351-7Search in Google Scholar

BERKGAUT V., SINGER A., 1996: High capacity cation exchanger by hydrothermal zeolitization of coal fly ash. Applied Clay Science 10, 369-378.10.1016/0169-1317(95)00033-XSearch in Google Scholar

BRECK D.W., 1974: Zeolite molecular sieves. Structure, chemistry, and use. John Wiley & Sons, New York-London-Sydney-Toronto.Search in Google Scholar

CHANG H.L., SHIH W.H., 1998: A general method for the conversion of fly ash into zeolites as ion exchangers for cesium. Ind. Eng. Chem. Res. 37, 71-78.10.1021/ie970362oSearch in Google Scholar

CHRISTIDIS G.E., PASPALIARIS I., KONSTANTOPOULOS A., 1999: Zeolitisation of perlite fines: mineralogical characteristics of the end products and mobilization of chemical elements. Applied Clay Science 15, 305-324.10.1016/S0169-1317(99)00007-1Search in Google Scholar

COCKS P.A., POPE CH.G., 1995: Salt effects on the synthesis of some aluminous zeolites. Zeolites, 15, 701-707.10.1016/0144-2449(95)00076-ISearch in Google Scholar

DERKOWSKI A., 2001: Różnorodne metody syntezy zeolitów z popiołów lotnych jako próba utylizacji odpadów paleniskowych. (Various methods of synthesis of zeolites from fly ash as an attempt of utilization of post-combustion wastes. In Polish). Przegląd Geologiczny 49, 337-338.Search in Google Scholar

DERKOWSKI A., 2002a: Microwave oven in synthesis of Na-zeolites from fly ash. Preliminary results. Mineralogia Polonica 33 (1), 81-95.Search in Google Scholar

DERKOWSKI A., 2002b: Experimental transformation of volcanic glass from Streda nad Bodrogom (SE Slovakia). Geologica Carpatica. 53, special issue CD.Search in Google Scholar

DONAHOE R.J., LIOU J.G., 1985: An experimental study on the process of zeolite formation. Geochimica and Cosmochimica Acta 49, 2349-2360.10.1016/0016-7037(85)90235-2Search in Google Scholar

ERMOSHIN V.A., SMIRNOV K.S., BOUGEARD D., 1997: Ab initio study of the initial steps of hydrothermal zeolite synthesis and of sol-gel processes. Journal of Molecular Structure (Theochem) 393, 171-176.10.1016/S0166-1280(96)04986-XSearch in Google Scholar

FIORE S., HUERTAS F.J., HUERTAS F., LINARES J., 2001: Smectite formation in ryolitic obsidian as inferred by microscopic (SEM-TEM-AEM) investigation. Clay Minerals 36, 489-500.10.1180/0009855013640004Search in Google Scholar

HARI BABU E., UPADHYA Y.D., UPADHYAY S.N., 1993: Removal of phenols from effluents by fly ash. International Journal of Environmental Studies 43, 169-176.10.1080/00207239308710824Search in Google Scholar

HOLLMAN G.C., STEENBRUGGEN G., JANSSEN-JURKOVICOVA M., 1999: A two-step process for the synthesis of zeolites from coal fly ash. Fuel 78, 1225-1230.10.1016/S0016-2361(99)00030-7Search in Google Scholar

KAWANO M., TOMITA K., 1997: Experimental study on the formation of zeolites from obsidian by interaction with NaOH and KOH solutions at 150 and 200°C. Clays and Clay Minerals 45, 365-377.10.1346/CCMN.1997.0450307Search in Google Scholar

KOLAY P.K., SINGH D.N., 2002: Characterization of an alkali activated lagoon ash and its application for heavy metal retention. Fuel 81, 483-489.10.1016/S0016-2361(01)00119-3Search in Google Scholar

LECHERT H., 1996: The mechanism of faujasite growth studied by crystallization kinetics. Zeolites 17, 473-482.10.1016/S0144-2449(96)00041-3Search in Google Scholar

LINDNER T., LECHERT H., 1996: Chelate ligands as mineralizing agents in hydrothermal synthesis of faujasite-type zeolites: A kinetic study. Zeolites 16, 196-206.10.1016/0144-2449(95)00121-2Search in Google Scholar

ŁOMNICKI A., 2000: Wprowadzenie do statystyki dla przyrodników. (Introduction to statistics for nature researchers. In Polish). Wyd. 2. Wydawnictwo Naukowe PWN, Warszawa.Search in Google Scholar

MA W.P., BROWN P.W., KOMARNENI S., 1998: Characterization and cation exchange properties of zeolite synthesized from fly ashes. Journal of Materials Research 13, 3-7.10.1557/JMR.1998.0001Search in Google Scholar

MANZ O.E., 1999: Coal fly ash: a retrospective and future look. Fuel 78, 133-136.10.1016/S0016-2361(98)00148-3Search in Google Scholar

MICHALIK M., WILCZYŃSKA-MICHALIK W., 1998: Synteza zeolitów z popiołów lotnych wytwarzanych w elektrowniach jako próba rozszerzenia możliwości utylizacji odpadów. (The synthesis of zeolites from electricity fly ash as an attempt of broadening of wastes utilization possibilities. In Polish). Przegląd Geologiczny 46, 421-425.Search in Google Scholar

MURAYAMA N., YAMAMOTO H., SHIBATA J., 2002: Mechanism of zeolite synthesis from coal fly ash by alkali hydrothermal reaction. International Journal of Mineral Processing 64, 1-17.10.1016/S0301-7516(01)00046-1Search in Google Scholar

OELKERS E.H., 2001: General kinetic description of multioxide silicate mineral and glass dissolution. Geochimica and Cosmochimica Acta 65, 3703-3719.10.1016/S0016-7037(01)00710-4Search in Google Scholar

POOLE C., PRIJATAMA H., RICE N.M., 2000: Synthesis of zeolite adsorbents by hydrothermal treatment of PFA wastes: a comparative study. Minerals Engineering 13, 831-842.10.1016/S0892-6875(00)00072-8Search in Google Scholar

QUERALT I., QUEROL X., LOPEZ-SOLER A., PLANA F., 1997: Use of coal fly ash for ceramics: a case study for a large Spanish power station. Fuel 76, 787-791.10.1016/S0016-2361(97)00024-0Search in Google Scholar

QUEROL X., ALASTUEY A., FERNANDEZ-TURIEL J.L., LOPEZ-SOLER A., 1995: Synthesis of zeolites by alkaline activation of ferro-aluminous fly ash. Fuel 74, 1226-1231.10.1016/0016-2361(95)00044-6Search in Google Scholar

QUEROL X., MORENO N., UMANA J.C., ALASTUEY A., HERNANDEZ E., LÓPEZ-SOLER A., PLANA F., 2002: Synthesis of zeolites from coal fly ash: an overview. International Journal of Coal Geology 50, 413-423.10.1016/S0166-5162(02)00124-6Search in Google Scholar

QUEROL X., PLANA F., ALASTUEY A., LOPEZ-SOLER A., 1997: Synthesis of Na-zeolites from fly ash. Fuel 76, 793-799.10.1016/S0016-2361(96)00188-3Search in Google Scholar

RATAJCZAK T., GAWEŁ A., GÓRNIAK K., MUSZYŃSKI M., SZYDŁAK T., WYSZOMIRSKI P., 1999: Charakterystyka popiołów lotnych ze spalania niektórych węgli kamiennych i brunatnych. (The characteristic of fly ashes after combustion of some of the brown and black coals. In Polish). Polskie Towarzystwo Mineralogiczne - Prace Specjalne 13, 11-34.Search in Google Scholar

SARBAK Z., KRAMER-WACHOWIAK M., 1998: Structural, thermal and adsorption properties of chemically modified fly ash. Hungarian Journal of Industral Chemistry 26, 101-104.Search in Google Scholar

SARBAK Z., KRAMER-WACHOWIAK M., 2002: Porous structure of waste fly ashes and their chemical modifications. Powder Technology 123, 53-58.10.1016/S0032-5910(01)00431-4Search in Google Scholar

SHIH W.H., CHANG H.L., 1996: Conversion of fly ash into zeolites for ion-exchange applications. Materials Letters 28, 263-268.10.1016/0167-577X(96)00064-XSearch in Google Scholar

TATLIER M., ERDEM-ŞENATALAR A., 1998: Fractal dimension as a tool to guide zeolite synthesis. Chaos, Solitons and Fractals 9, 1803-1812.10.1016/S0960-0779(98)00004-6Search in Google Scholar

TREACY M.M.J., HIGGINS J.B., 2001: Collection of simulated XRD powder patterns for zeolites. Str. Comm. IZA. 5th Revised Edition, Elsevier, London Boston Singapore Sydney Toronto Wellington.Search in Google Scholar

TYSON R., 1997: Scientists link coal fly ash disposal to amphibian abnormalities. Environmental Science and Technology 31, 408.10.1021/es972465421650383Search in Google Scholar

WILCZYŃSKA-MICHALIK W., MICHALIK M., 1996: Charakterystyka morfologiczna i chemiczna produktów spalania paliw stałych. (The morphological and chemical characteristic of solid fuels combustion products. In Polish). Aura 6, 5-6.Search in Google Scholar

WIRSCHING U., 1981: Experiments on the hydrothermal formation of calcium zeolites. Clays Clay Minerals 29, 171-183.10.1346/CCMN.1981.0290302Search in Google Scholar

YAN J., NERETNIEKS I., 1995: Is the glass phase dissolution rate always a limiting factor in the leaching processes of combustion residues? Science of Total Environment 172, 95-118.10.1016/0048-9697(95)04727-1Search in Google Scholar

eISSN:
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ISSN:
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Language:
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