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QUEROL, X.; UMANÃ, J.C.; PLANA, F.; ALASTUEY, A.; LÓPEZ-SOLER, A.; MEDINACELI, A.; VALERO, A.; DOMINGO, M.J.; GARCIA-ROJO, E. Synthesis of zeolites from fly ash at pilot plant scale: examples of potential applications. Fuel, v. 80, p. 857-865, 2001.

QUEROL, X.; ALASTUEY, A.; LÓPEZ-SOLER, A.; PLANA, F.; ANDRÉS, J.M.; JUAN, R.; FERRER, P.; RUIZ, C.R. A fast method for recycling fly ash: microwave- assisted zeolite synthesis. Environ. Sci. Technol., v. 31, p. 2527-2533, 1997.

QUEROL, X.; ALASTUEY, A.; FERNÁNDEZ-TURIEL, J. L.; LÓPEZ-SOLER, A. Synthesis of zeolites by alkaline activation of ferro-aluminous fly ash. Fuel, v. 74, p. 1226- 1231, 1995.

RAMYA, M.; ANUSHA, B.; KALAVATHY, S. Decolorization and biodegradation of indigo carmine by a textile soil isolate Paenibacillus larvae. Biodegradation. v. 19, p.

283–291, 2008.

RATH, P.; PANDA, U.C.; BHATTA, D.; SAHU, K.C. Use of sequential leaching, mineralogy, morphology and multivariate statistical technique for quantifying metal pollution in highly polluted aquatic sediments - a case study: Brahmani and Nandira Rivers, India. J. Hazard. Mater., v. 163, p. 632-644, 2009.

ROBINSON, T.; MCMULLAN, G.; MARCHANT, R.; NIGAM, P. Remediation of dyes in textile effluent: a critical review on current treatment technologies with a proposed alternative. Biores. Technol. v. 77, p. 247–255, 2001.

ROSA, S.; LARANJEIRA, M.C.M.; RIELA, H.G.; FÁVERE, V.T. Cross-linked quaternary chitosan as an adsorbent for the removal of the reactive dye from aqueous solutions. J. Hazard. Mater., v. 155, p. 253–260, 2008.

ROYER, B.; CARDOSO, N.F.; LIMA, E.C.; RUIZ, V.S.O.; MACEDO, T.R.; AIROLDI, C. Organofunctionalized kenyaite for dye removal from aqueous solution. J. Colloid

RUTHVEN, D.M. Fundamentals of adsorption equilibrium and kinetics in microporous

solids. Berlin: Springer, 2008. v. 7. Molecular sieves, science and technology – adsorption

and diffusion.

SANGHI, R.; BHATTACHARYA, B. Review on decolorisation of aqueous dye solutions by low cost adsorbents. Color. Technol. v. 118, p. 256–269, 2002.

SAUER, T. Degradação fotocatalítica de corante e efluente têxtil. 2002. Dissertação (Mestrado) - Universidade Federal de Santa Catarina, Florianópolis.

SCHWANKE, R.O. Determinação da difusividade de hidrocarbonetos aromáticos em

zeólitas e por métodos cromatográficos. 2003. Dissertação (Mestrado) – Universidade

Federal de Santa Catarina, Florianópolis.

SHARMA, A.; BHATTACHARYYA, K. G. Utilization of biosorbent based on

Azadirachta indica (Neem) leaves for removal of water-soluble dyes. Indian J. Chem.

Technol. v. 12, p. 285-295, 2005.

SHUKLA, A.; ZHANG, Y. H.; DUBEY, P.; MARGRAVE, J. L.; SHUKLA, S. S. The role of sawdust in the removal of unwanted materials from water. J. Hazard. Mater., v. 95, p. 137-152, 2002.

SIGMA-ALDRICH. Material safety data sheet - reactive orange 16, número do produto: 306509. 2004. Disponível em:

<http://www.sigmaaldrich.com/catalog/ProductDetail.do?lang=en&N4=306509|SIAL&N5 =SEARCH_CONCAT_PNO|BRAND_KEY&F=SPEC#testwww.sigma-aldrich.com>. Acesso em: 17 dez. 2009.

SILVA, M.A.C. Avaliação experimental e modelagem do processo contínuo de adsorção

do preto remazol B em coluna de leito fixo de carvão ativado. 2006. Dissertação

(Mestrado) – Universidade Federal de Pernambuco, Recife.

SILVA, N.I.W.; CALARGE, L.M.; CHIES, F.; MALLMANN, J.E.; ZWONOK, O. Caracterização de cinzas volantes para aproveitamento cerâmico. Cerâmica, v. 45, n. 296, 1999. Disponível em: <http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0366- 69131999000600004>. Acesso em: 16 jul. 2009.

SINGH, S.; RAI, B.N.; RAI, L.C. Ni (II) and Cr (VI) sorption kinetics by Microcystis in single and multimetallic system. Process Biochem., v. 36, n. 12, p. 1205–1213, 2001. SIVARAJ, R.; NAMASIVAYAM, C.; KADIRVELU, K. Orange peel as an adsorbent in the removal of acid violet 17 (acid dye) from aqueous solutions. Waste Manage., v. 21, p.

105–110, 2001.

SOARES, J.L. Remoção de corantes têxteis por adsorção em carvão mineral ativado com

alto teor de cinzas. 1998. Dissertação (Mestrado) - Universidade Federal de Santa

Catarina, Florianópolis.

SOUZA, C.L., PERALTA-ZAMORA, P. Degradação redutiva de azo-corantes utilizando- se ferro metálico. Eng. Sanit. Ambient., vol. II, n. 1, jan/mar, p. 16–20, 2006.

SOUZA, V.P.; NASCIMENTO, M.; COELHO, C.F. Adsorção de metais pesados em zeólita sintetizada a partir do tratamento alcalino hidrotérmico de cinza de carvão. In: XXI ENCONTRO NACIONAL DE TRATAMENTO DE MINÉRIOS E METALURGIA EXTRATIVA, Nov. 20-24, 2005, Natal, RN. Disponível em:

<http://www.cetem.gov.br/publicacao/CTs/CT2005-111-00.pdf>. Acesso em: 6 ago. 2009. SUZUKI, M. Adsorption engineering. Tokyo e Amsterdam: Kodansha Ltd. e Elsevier Science Publishers B.V., 1990.

TANAKA, H.; MATSUMURA, S.; HINO, R. Formation process of Na-X zeolites from coal fly ash. J. Mater. Sci., v. 39, p. 1677–1682, 2004.

TOR, A.; CENGELOGLU, Y. Removal of congo red from aqueous solution by adsorption onto activated red mud. J. Hazard. Mat., v. B138, p. 409–415, 2006.

UGURLU, M.; GURSES, A.; YALCIN, M.; DOGAR, C. Removal of phenolic and lignin compounds from bleached kraft mill efluent by fly ash and sepiolite. Adsorption, v. 11, p. 87-97, 2005.

UMBUZEIRO, G.A.; FREEMAN, H.S.; WARREN, S.H.; OLIVEIRA, D.P.; TERAO, Y.; WATANABE, T.; CLAXTON, L.D. The contribution of azo dyes to the mutagenic

activity of the Cristais River. Chemosphere, v. 60, p. 55-64, 2005.

UMBUZEIRO, G.A.; ROUBICEK, D.A.; RECH, C.M.; SATO, M.I.Z.; CLAXTON, L.D. Investigating the sources of the mutagenic activity found in a river using the Salmonella assay and different water extraction procedures. Chemosphere, v. 54, p. 1589-1597, 2004. VADIVELAN, V.; KUMAR, K.V. Equilibrium, kinetics, mechanism, and process design for the sorption of methylene blue onto rice husk. J. Colloid Interface Sci., v. 286, p. 90– 100, 2005.

VAGHETTI, J.C.P. Utilização de biossorventes para remediação de efluentes aquosos

contaminados com íons metálicos. 2009. Tese (Doutorado). Universidade Federal do Rio

Grande do Sul, Porto Alegre.

VAGHETTI, M.A.O. Efeitos da cinza volante com cinza de casca de arroz ou sílica ativa

sobre a carbonatação do concreto de cimento Portland. 1999. Dissertação (Mestrado) -

Universidade Federal de Santa Maria, Santa Maria.

VAUTIER, M.; GUILLARD, C.; HERMANN, J.M. Photocatalytic degradation of dyes in water: case study of indigo and of indigo carmine. J. Catal., v. 201, p. 46-59, 2001. VEIGA, L.B.E.; VEIGA, M.M. A simbiose industrial na reutilização dos resíduos sólidos. In: 23º CONGRESSO BRASILEIRO DE ENGENHARIA SANITÁRIA E AMBIENTAL, III-177, 2005, Campo Grande, MS. Anais...Campo Grande, 2005. 1 CD-ROM.

VETEC QUÍMICA FINA. Ficha de informações de segurança de produtos químicos

índigo carmin, n. 0000873. 2008. Disponível em:

VIJAYARAGHAVAN, K.; WON, S.W.; YUN-SANG, Y. Treatment of complex remazol dye effluent using sawdust- and coal-based activated carbons. J. Hazard. Mater., v. 167, p.

790–796, 2009.

VOLESKY, B. Evaluation biosorption performance. 2004. cap. 6. Sorption and biosorption. Disponível em <http://biosorpton.mcgill.ca/>. Acesso em: 30 dez. 2009. WALKER, G.M.; WEATHERLEY, L.R. Adsorption of dyes from aqueous solution – the effect of adsorbent pores size distribution and dye aggregation. Chem. Eng. J., v. 83, p.

201–206, 2001.

WEBER, W.J. Physicochemical processes for water quality control. 2 ed. New York: Wiley-Interscience, 1972.

WEBER, W.J.; MORRIS, J.C. Kinetics of adsorption carbon from solutions. J. Sanit. Eng.

Div., American Society Chemical Engineering, v. 89, p. 31–60, 1963.

WON, S.W.; CHOI, S.B.; YUN, Y-S. Performance and mechanism in binding of reactive orange 16 to various types of sludge. Biochem. Eng. J., v. 28, p. 208-214, 2006.

WOOLARD, C.D.; STRONG, J.; ERASMUS, C.R. Evaluation of the use of modified coal ash as a potential sorbent for organic waste streams. Appl. Geochem., v. 17, p. 1159–1164, 2002.

WORLD COAL INSTITUTE. Le charbon comme ressource - une vue d' ensemble du

charbon. Disponível em:

<http://www.worldcoal.org/bin/pdf/original_pdf_file/coal_resource_overview_coal_french (03_06_2009).pdf>. Acesso em: 2 ago. 2009

WORLD ENERGY COUNCIL. Desenvolvimento Energético Global Sustentável: O Caso

do Carvão, 2004. Disponível em:

<http://www.worldenergy.org/documents/carvo_desenvolvimento_energtico.pdf >. Acesso em: 16 jul. 2009.

WU, D.; HU, Z.; WANG, X.; HE, S.; WONG, H. Use of zeolitized coal fly ash in the simultaneous removal of ammonium and phosphate from aqueous solution. Front.

Environ. Sci. Engin. China, v. 1, n. 2, p. 213-220, 2007.

YANG, R.T. Adsorbents – fundamentals and applications. New Jersey: John Wiley & Sons, 2003.

ZANONI, M. V. B.; CARNEIRO, P. A. O descarte dos corantes têxteis. Ciência Hoje, v. 29, n. 174, p. 61–64, 2001.

ZHOU, H.M.; LUO, Y.; YU, J.G.; QIAO, X.C. Feasibility of recovery alumina from coal fly ash. In: WORLD COAL ASH CONFERENCE, May 4-7, 2009, Lexington, Kentucky. Disponível em: <http://www.worldofcoalash.org/2009/ashpdf/a013-qiao2009.pdf>. Acesso em: 5 ago. 2009.

ZOLLINGER, H. Color chemistry: syntheses, properties, and applications of organic