Academic literature on the topic 'Reactive blue 19 dye'

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Journal articles on the topic "Reactive blue 19 dye"

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Siddique, Maria, Robina Farooq, Abda Khalid, et al. "Thermal-pressure-mediated hydrolysis of Reactive Blue 19 dye." Journal of Hazardous Materials 172, no. 2-3 (2009): 1007–12. http://dx.doi.org/10.1016/j.jhazmat.2009.07.095.

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Ibanescu, Alina, Maria Celina Alexandrica, Doina Hritcu, Ovidiu Chiscan, and Marcel Ionel Popa. "Magnetite/chitosan composite particles as adsorbents for Reactive Blue 19 dye." Green Materials 6, no. 4 (2018): 149–56. http://dx.doi.org/10.1680/jgrma.18.00039.

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Fanchiang, J. ‐M, and D. ‐H Tseng. "Decolorization and transformation of anthraquinone dye Reactive Blue 19 by ozonation." Environmental Technology 30, no. 2 (2009): 161–72. http://dx.doi.org/10.1080/09593330802422886.

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Moghadam, Fahimeh, and Najmeh Nori Kohbanan. "Removal of Reactive Blue 19 Dye Using Fenton From Aqueous Solution." Avicenna Journal of Environmental Health Engineering 5, no. 1 (2018): 50–55. http://dx.doi.org/10.15171/ajehe.2018.07.

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The discharge of wastewater containing reactive dyes into water sources leads to health hazards. Colors can adversely affect the natural environment due largely to some qualities like carcinogenicity, being mutagenic, toxicity, and coloration of water. Environmental degradation can be attributed to the destruction of living organisms and the increased biological oxygen demand (BOD). The aim of this study was to evaluate the removal of Reactive Blue 19 dye using the Fenton process from aqueous solution. This research was an experimental study, in which the effectiveness of Fenton in color remov
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Hakro, Raheel Ahmed, Mujahid Mehdi, Raja Fahad Qureshi, et al. "Efficient removal of reactive blue-19 dye by co-electrospun nanofibers." Materials Research Express 8, no. 5 (2021): 055502. http://dx.doi.org/10.1088/2053-1591/abfc7d.

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Perng, Yuan-Shing, and Ha Manh Bui. "Decolorization of reactive dyeing wastewater by ferrous ammonium sulfate hexahydrate." Journal of Vietnamese Environment 5, no. 1 (2014): 27–31. http://dx.doi.org/10.13141/jve.vol5.no1.pp27-31.

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This paper presents the result of dyeing solution coagulation with the use of ferrous ammonium sulfate hexahydrate (FAS). The examined solution contains two reactive dyes: Black 5 and Blue 19. It has been shown that the efficiency of the dye removal depends on the type of dye, coagulation dosage and the initial pH. Our result showed that the increase of initial pH up to 12 enhanced the color removal efficiency; the FAS dose was determined 280 ml (Black 5) and 180 mg/l (Blue 19) at slow mixing time 15 min, agitation speed 60 rpm, and the initial dye concentration should be 50 and 100 mg/L for B
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Huang, Li Hui, Guo Peng Sun, Hou Yi Ma, and Tao Yang. "Reaction Mechanism of Dye with Atomic Hydrogen on Au Cathode Plated Nanostructured Pd Film." Applied Mechanics and Materials 121-126 (October 2011): 320–24. http://dx.doi.org/10.4028/www.scientific.net/amm.121-126.320.

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The Au electrode plated nanostructure Pd was used to study the reaction mechanism of C.I. reactive blue 19 and reactive brilliant blue K-GR with atomic hydrogen in 0.2M H2SO4 solution by the electrochemical method. The nanostructured Pd/Au electrode showed the various forms of hydrogen. Through the result of cyclic voltammetry, Tafel curve and EIS, the protonation of dye molecule could accelerate the production of atomic hydrogen and the adsorption of dye on Pd/Au electrode. The decolorization efficiency using potentiostatic polarization at -0.18V was highest than that at other polarization po
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Shwe, Moe Thazin, Marites M. Dimaculangan, and Mark Daniel G. De Luna. "Decolourization of Simulated Dye Wastewater Containing Reactive Blue 19 (RB19) by the Electro-Fenton Reaction in the Presence of Metal Oxide-Coated Electrodes." Advanced Materials Research 858 (November 2013): 40–45. http://dx.doi.org/10.4028/www.scientific.net/amr.858.40.

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Reactive Blue (RB 19), also known as Remazol brilliant blue, is a widely-used colorant in various textile applications. RB 19 is very resistant to chemical oxidation due to its aromatic anthraquinone structure highly stabilized by resonance. Its relatively low fixation efficiency (75-80%) attributed to the competition between the formation of the reactive form (vinyl sulfone) and the hydrolysis reaction, results in its prevalence in textile wastewater discharges. In this study, electro-Fenton (EF) process, a popular advanced oxidation process (AOP) was used to treat RB 19 dye-containing simula
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Siddique, Maria, Robina Farooq, Zahid Mehmood Khan, Zarsher Khan, and S. F. Shaukat. "Enhanced decomposition of reactive blue 19 dye in ultrasound assisted electrochemical reactor." Ultrasonics Sonochemistry 18, no. 1 (2011): 190–96. http://dx.doi.org/10.1016/j.ultsonch.2010.05.004.

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Pei, Liujun, Juanjuan Liu, Guoqiang Cai, and Jiping Wang. "Study of hydrolytic kinetics of vinyl sulfone reactive dye in siloxane reverse micro-emulsion." Textile Research Journal 87, no. 19 (2016): 2368–78. http://dx.doi.org/10.1177/0040517516671123.

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Reactive dyes maintain a long reaction with fiber and show a high dye uptake and fixation rate, and effectively decrease the dyeing waste water in siloxane reverse micro-emulsion. However, little research has been carried out into the hydrolysis reaction of reactive dyes in reverse micro-emulsion. In this study, Reactive Blue 19 was selected as a model vinyl sulfone reactive dye to study its hydrolysis in siloxane reverse micro-emulsion. The hydrolysis reaction was analyzed using high performance liquid chromatography. The results show that the hydrolysis rate of vinyl sulfone dyes in siloxane
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Dissertations / Theses on the topic "Reactive blue 19 dye"

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Dykstra, Christine M. "Decolorization of an azo and anthraquinone textile dye by a mixture of living and non-living Trametes versicolor fungus." Honors in the Major Thesis, University of Central Florida, 2011. http://digital.library.ucf.edu/cdm/ref/collection/ETH/id/375.

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Wastewater from the textile industry is difficult to treat effectively due to the prevalent use and wide variety of synthetic dyes that are resistant to conventional treatment methods. White-rot fungi, such as Trametes versicolor, have been found to be effective in decolorizing many of these synthetic dyes and current research is focusing on their application to wastewater treatment. Although numerous studies have been conducted on the ability of both living and nonliving Trametes versicolor to separately decolorize textile dyes, no studies were found to have investigated the use of a mixture
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Vasconcelos, Vanessa Moura. "Degradação eletroquímica/química dos corantes têxteis Reativo Azul 19 e Reativo Preto 5 utilizando eletrodos de diamante dopado com boro e H2O2 eletrogerado em eletrodo de carbono vítreo reticulado." Universidade de São Paulo, 2015. http://www.teses.usp.br/teses/disponiveis/75/75135/tde-25112015-092817/.

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A problemática envolvendo os efluentes têxteis decorre principalmente da elevada coloração que apresentam, devido à presença de corantes que além de serem quimicamente estáveis, podem ser tóxicos e/ou carcinogênicos. Logo, quando são descartados in natura no meio ambiente causam problemas estéticos e, sobretudo, ambientais mesmo em baixas concentrações, além da possibilidade de serem nocivos à saúde humana e dos animais. Neste contexto, o objetivo deste trabalho foi estudar a degradação eletroquímica de dois corantes têxteis, Reativo Azul 19 (RA-19) e o Reativo Preto 5 (RP-5) via Oxidação Anód
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Melo, Ricardo Paulo Fonseca. "Extra??o do corante reactive blue 19 utilizando tensoativo n?o i?nico." Universidade Federal do Rio Grande do Norte, 2012. http://repositorio.ufrn.br:8080/jspui/handle/123456789/15826.

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Made available in DSpace on 2014-12-17T15:01:28Z (GMT). No. of bitstreams: 1 RicardoPFM_DISSERT.pdf: 809568 bytes, checksum: 0179539902298813dbee39bd2859650c (MD5) Previous issue date: 2012-07-20<br>The generation of effluent from the finishing process in textile industry is a serious environmental problem and turned into an object of study in several scientific papers. Contamination with dyes and the presences of substances that are toxic to the environment characterize this difficult treatment effluent. Several processes have already been evaluated to remove and even degrade such pol
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Perng, Yuan-Shing, and Ha-Manh Bui. "Decolorization of reactive dyeing wastewater by Poly Aluminium Chloride." Saechsische Landesbibliothek- Staats- und Universitaetsbibliothek Dresden, 2015. http://nbn-resolving.de/urn:nbn:de:bsz:14-qucosa-176575.

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Color removal of some reactive dyes (Blue 19, Black 5 and Red 195) using a local Poly Aluminium Chloride (PAC) was investigated with Jar-test experiment. The dyes were removed (above 94%) at optimal pH 7 (Red 195) and pH 10 (Blue 19 and Black 5). The PAC dosage of 220 mg/L (Blue 19 and Black 5) and 160 mg/L (Red 195) were found to be best for decreasing dye up to 50 mg/L (Black 5, Red 195) and 100 mg/L (Blue 19). Reaction time and agit ation speed also affected the decolorization process. That result indicates that Vietnamese PAC can be a robust and economical coagulant for discolorization of
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Yang, Hanbae. "Zero-Valent Iron Decolorization of the Anthraquinone Dye Reactive Blue 4 and Biodegradation Assessment of its Decolorization Products." Thesis, Georgia Institute of Technology, 2005. http://hdl.handle.net/1853/6920.

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Anthraquinone dyes constitute the second largest class of textile dyes, and are used extensively in the textile industry. A high fraction of the initial reactive dye mass used in the dyeing process remains in the spent dyebath. Reactive dyes are not readily removed by typical wastewater treatment processes and the high salt concentration typical of reactive dyeing further complicates the management of spent reactive dyebaths. Investigation of the reductive transformation of reactive anthraquinone dyes and their decolorization products has been very limited. Additionally, very limited research
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Perng, Yuan-Shing, and Ha-Manh Bui. "Decolorization of reactive dyeing wastewater by ferrous ammonium sulfate hexahydrate." Saechsische Landesbibliothek- Staats- und Universitaetsbibliothek Dresden, 2015. http://nbn-resolving.de/urn:nbn:de:bsz:14-qucosa-176606.

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This paper presents the result of dyeing solution coagulation with the use of ferrous ammonium sulfate hexah ydrate (FAS). The examined solution contains two reactive dyes: Black 5 and Blue 19. It has been shown that the efficiency of the dye removal depends on the type of dye, coagulation dosage and the initial pH. Our result showed that the increase of initial pH up to 12 enhanced the color removal efficiency; the FAS dose was 280 ml (Black 5) and 180 mg/l (Blue 19) at slow mixing time (15 min), agitation speed 60 rpm, and the initial dye concentration should be 50 and 100 mg/L for Black 5 a
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Jesus, Carolina Petrisin Costa de. "Caracterização da lama vermelha e sua aplicabilidade na adsorção do corante têxtil Reativo Azul 19 /." Bauru : [s.n.], 2011. http://hdl.handle.net/11449/98293.

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Orientador: Maria Lúcia Pereira Antunes<br>Banca: Steven Frederick Durrant<br>Banca: Isabele Rodrigues Nascimento<br>Resumo: A indústria têxtil é reponsável pela geração de efluentes que, normalmente, apresentam um nível indesejável de coloração devido, principalmente, à etapa de tingimento, onde utiliza-se corantes que, quando lançados nos corpos d'água, levam à alteração de sua qualidade e ocasionam efeitos danosos ao meio ambiente e à saúde humana. Em vista disso, o presente trabalho teve como objetivo utilizar a lama vermelha, resídu gerado em larga escala na produção de alumínio, como mei
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Jesus, Carolina Petrisin Costa de [UNESP]. "Caracterização da lama vermelha e sua aplicabilidade na adsorção do corante têxtil Reativo Azul 19." Universidade Estadual Paulista (UNESP), 2011. http://hdl.handle.net/11449/98293.

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Made available in DSpace on 2014-06-11T19:29:30Z (GMT). No. of bitstreams: 0 Previous issue date: 2011-08-12Bitstream added on 2014-06-13T19:38:37Z : No. of bitstreams: 1 jesus_cpc_me_bauru.pdf: 1443727 bytes, checksum: 0d2cf71cfa04b15b8e8be0cd13d25601 (MD5)<br>Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)<br>A indústria têxtil é reponsável pela geração de efluentes que, normalmente, apresentam um nível indesejável de coloração devido, principalmente, à etapa de tingimento, onde utiliza-se corantes que, quando lançados nos corpos d'água, levam à alteração de sua qualida
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Pirgalioglu, Saltuk. "Catalytic Ozonation Of Dye Solutions In A Semi-batch Reactor." Master's thesis, METU, 2008. http://etd.lib.metu.edu.tr/upload/3/12610158/index.pdf.

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Treatment of textile wastewaters containing dye materials using the conventional methods based on biological treatment is not possible. In order to overcome this problem, ozonation based on the oxidation of organic pollutants with ozone gas dissolved in aqueous phase have been studied widely. Catalytic ozonation and advanced oxidation processes (AOP) are also used in order to increase the efficiency of sole ozonation In this work, catalytic ozonation processes in the presence of Copper Sulfide (CuS) powder and a synthesized catalyst by the impregnation of iron on alumina (Fe/Al2O3) were studi
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Oliveira, Clélia Aparecida da Silva 1972. "Tratamento de corante têxtil por eletrólise, fotólise e fotocatálise utilizando LED UV = Treatment of textile dye by electrolytic, photolytic and photocatalytic processes." [s.n.], 2013. http://repositorio.unicamp.br/jspui/handle/REPOSIP/267750.

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Orientador: Peterson Bueno de Moraes<br>Dissertação (mestrado) - Universidade Estadual de Campinas, Faculdade de Tecnologia<br>Made available in DSpace on 2018-08-23T06:55:03Z (GMT). No. of bitstreams: 1 Oliveira_CleliaAparecidadaSilva_M.pdf: 1434373 bytes, checksum: 2411a1ce9b13fbe4e8f7d778c6dfd3ea (MD5) Previous issue date: 2013<br>Resumo: A indústria têxtil gera elevados volumes de efluentes com alta carga orgânica e compostos recalcitrantes, os quais são tratados por sistemas baseados em processos físicos, químicos e biológicos convencionais. Entretanto, o caráter não destrutivo dos trat
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Books on the topic "Reactive blue 19 dye"

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Weber, Eric J. Reactive dyes in the aquatic environment: A case study of Reactive Blue 19. U.S. Environmental Protection Agency, Environmental Research Laboratory, 1990.

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Book chapters on the topic "Reactive blue 19 dye"

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Nawawi, W. I., and F. Bakar. "Reactive Red 4 Dye-Sensitized Immobilized TiO2 for Degradation of Methylene Blue Dye." In Proceedings of the Second International Conference on the Future of ASEAN (ICoFA) 2017 – Volume 2. Springer Singapore, 2018. http://dx.doi.org/10.1007/978-981-10-8471-3_54.

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Chinoune, Kheira, Zohra Bouberka, Nesrine Touaa, and Ulrich Maschke. "Adsorption Study of Reactive Blue 2 Dye on CTAB-Bentonite in Aqueous Solution." In Springer Proceedings in Energy. Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-45677-5_13.

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Mumtaz, S., N. Malik, and S. Ahmed. "Decolorization of metal complex dye reactive blue 221 by pseudomonas aeruginosa." In WASTES 2015 – Solutions, Treatments and Opportunities. CRC Press, 2015. http://dx.doi.org/10.1201/b18853-29.

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Pardiwala, J., Femina Patel, and Sanjay Patel. "Photocatalytic degradation of reactive turquoise blue dye using MFe2O4 (M = Ni, Zn) spinels by reactive grinding and sol-gel methods." In Multi-disciplinary Sustainable Engineering: Current and Future Trends. CRC Press, 2016. http://dx.doi.org/10.1201/b20013-33.

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Conference papers on the topic "Reactive blue 19 dye"

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Masitah, H., H. H. Bassim, and A. Abdul Latif. "Thermodynamic studies on removal of reactive blue 19 dye on cross-linked chitosan/oil palm ash composite beads." In 2009 3rd International Conference on Energy and Environment (ICEE). IEEE, 2009. http://dx.doi.org/10.1109/iceenviron.2009.5398673.

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SILVA, L. T. V., I. A. MARTINS, L. M. G. SENA, et al. "ESTUDO DA REMOÇÃO DO CORANTE REMAZOL REACTIVE BLUE 19 POR ELETROCOAGULAÇÃO UTILIZANDO ELETRODOS DE ALUMÍNIO NITRETADOS." In XXII Congresso Brasileiro de Engenharia Química. Editora Blucher, 2018. http://dx.doi.org/10.5151/cobeq2018-pt.0128.

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"Catalytic degradation Methylene blue dye by green synthesized silver nanoparticles." In April 18-19, 2017 Kyoto (Japan). DiRPUB, 2017. http://dx.doi.org/10.15242/dirpub.dir0417270.

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Alrozi, R., N. A. Zamanhuri, and M. S. Osman. "Adsorption of reactive dye Remazol Brilliant Blue R from aqueous solutions by rambutan peel." In 2012 IEEE Symposium on Humanities, Science and Engineering Research (SHUSER). IEEE, 2012. http://dx.doi.org/10.1109/shuser.2012.6268855.

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Khim, Ong Keat, Mohd Asri Md Nor, Syuriya Mohamad, Nas Aulia Ahmad Nasaruddin, Nor Laili-Azua Jamari, and Wan Md Zin Wan Yunus. "Isotherm study of reactive Blue 19 adsorption by an alum sludge." In INTERNATIONAL CONFERENCE ON MATHEMATICS, ENGINEERING AND INDUSTRIAL APPLICATIONS 2014 (ICoMEIA 2014). AIP Publishing LLC, 2015. http://dx.doi.org/10.1063/1.4915773.

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Razali, Nur Aqilah, Che Zulzikrami Azner Abidin, Ong Soon An, et al. "O3/S2O82- enhanced degradation of reactive green 19 dye: Response surface methodology." In INTERNATIONAL SYMPOSIUM ON GREEN AND SUSTAINABLE TECHNOLOGY (ISGST2019). AIP Publishing, 2019. http://dx.doi.org/10.1063/1.5126550.

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Devi, R. Sukanya, and A. Geethakarthi. "Electro - chemical coagulation treatment for the degradation of reactive blue 25 dye effluent using different electrodes." In PROCEEDINGS OF ADVANCED MATERIAL, ENGINEERING & TECHNOLOGY. AIP Publishing, 2020. http://dx.doi.org/10.1063/5.0019520.

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Theivarasu, C., and S. Mylsamy. "Adsorption of reactive blue 2 dye from aqueous solution by cocoa (Theobroma) cacao shell: An agro solid waste." In 2011 International Conference on Green Technology and Environmental Conservation (GTEC 2011). IEEE, 2011. http://dx.doi.org/10.1109/gtec.2011.6167688.

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Velpula, Priyadarshini, Santosh Ghuge, and Anil K. Saroha. "Treatability study of the effluent containing reactive blue 21 dye by ozonation and the mass transfer study of ozone." In INTERNATIONAL CONFERENCE ON ELECTRICAL, ELECTRONICS, MATERIALS AND APPLIED SCIENCE. Author(s), 2018. http://dx.doi.org/10.1063/1.5032032.

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Nur Azimah Jamalluddin and Ahmad Zuhairi Abdullah. "Degradation of reactive blue 4 dye by a combination of Fe (III)/TiO2 catalyst and ultrasonic irradiation: Effect of Fe (III) loading and aeration." In 2010 2nd International Conference on Chemical, Biological and Environmental Engineering (ICBEE). IEEE, 2010. http://dx.doi.org/10.1109/icbee.2010.5649434.

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