• Title/Summary/Keyword: Decolorization

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Decolorization of Synthetic Dyes and Ligninolytic Enzymes Production by White Rot Fungi (백색부후균에 의한 합성염료의 탈색과 리그닌분해 효소의 생산)

  • Gu, Bon-Joon;Kim, Min-Sik;Kim, Yin-Man;Kim, Seon-Woong;Choi, Won-Hyeok;Lee, Mi-Hwa;Cho, Hae-Jin;Lee, Tae-Soo
    • The Korean Journal of Mycology
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    • v.40 no.2
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    • pp.98-103
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    • 2012
  • This study has been conducted to screen the decolorization of 4 aromatic synthetic dyes and production of ligninolytic enzymes by 4 white rot fungi such as Bjerkanderia adusta, Cerrena unicolor, Pleurotus pulmonarius and Abortiporus biennis. It was found that B. adusta, C. unicolor, and P. pulmonarius have the ability to efficiently decolorize congo red and moderately decolorized amaranth and orange G in solid and liquid culture media. However, the decolorization rate of 4 synthetic dyes by A. biennis was relatively low. The decolorization of congo red, amaranth, orange G were related to the growth rate of the fungal mycelia in the solid medium. But, the all fungi tested did not efficiently decolorize methylene blue in the liquid culture media. To investigate the production of ligninolytic enzymes in media containing aromatic compounds, fungi were cultured in 1% naphthalene supplemented potato dextrose broth medium. All fungi tested had the capability to produce laccase, lignin peroxidase and manganese peroxidase, and B. adusta was the best ligninolytic enzymes producing white rot fungus among other fungi tested.

Decolorization of Azo, Triphenylmethane and Heterocyclic Dyes by Irpex zonatus BN2 (송곳니구름버섯(Irpex zonatus) BN2에 의한 아조계, 트리페닐메탄계 및 헤테로싸이클릭계 염료의 탈색)

  • Yoon, Kyung-Ha;Choi, Yang-Soon
    • The Korean Journal of Mycology
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    • v.26 no.1 s.84
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    • pp.8-15
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    • 1998
  • The present research was undertaken to investigate the activity of ligninolytic enzymes and the decolorization capability of some dyes with Irpex zonatus BN2, isolated from nature and identified. For the assay of enzyme activities, the isolate did not produce lignin peroxidase (LiP) and veratryl alcohol oxidase (VAO), but laccase and manganese dependent peroxidase (MnP). While the activity for MnP was low $(61.6\;nmol/mg{\cdot}protein)$, its laccase activity was very high $(1185.9\;nmol/mg{\cdot}protein)$. Moreover, laccase had appeared earlier than MnP. When the isolate was incubated with each dye for 10 days, the decolorization rates of azo dyes, such as orange II, orange G, tropaeolin O and congo red were 98.0%, 97.4%, 99.0% and 95.3%, respectively. In case of heterocyclic dyes, eosin Y, toludine blue, methyl blue and azur B were 97.4 %, 98.7%, 99.9% and 94.0% respectively. Finally the results of triphenylmethane dye such as basic fuchsin, malachite green and crystal violet were 98.5%, 95.7% and 99.4%, respectively. The results suggest that laccase of Irpex zonatus BN2 should be played an important role in the decolorization of the dyes.

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Biological Treatemnt of Dye Wastewater Using an Anaerobic-Aerobic System (혐기-호기 공정을 이용한 염료페수의 생물학적 처리)

  • 박영식;문정현;안갑환
    • Journal of Environmental Science International
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    • v.11 no.6
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    • pp.569-576
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    • 2002
  • Anaerobic/aerobic reactor system was used to treat a synthetic wastewater with glucose as carbon sources(0.38~2.29 kg COD/m3.day) and Acid Red 14(1.05 "24.00 g Acid Red 141m3.day, color degree of 570 ~ 1710). COD removal efficiency by the anaerobic stage in operation period were above 90 % organic loading rate of 0.38 ~ 2.29 kg COD/m3.day(except, adaptation period) and the removal efficiency of the whole system were above 96 %. The decolorization of the Acid Red 14 was through the alteration of the dye structure(or cleavage of the Azo bond) during the anaerobic treatment. In the A/A system, the anaerobic stage played an essential role in removing both color and COD. In addition it also improves biodegradability of dye f3r further aerobic treatment. After operation, average MLSS concentration of anaerobic sludge reactor, anaerobic fixed-bed reactor and aerobic fixed-bed reactor were 17100mg/L, 20000mg/L, and 10000mg/L, respectively.

Kinetic modeling analysis for the decolorization of dyes using a mixed adsorbent

  • Ravikumar, K.;Son, Young-A
    • Textile Coloration and Finishing
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    • v.18 no.5 s.90
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    • pp.42-47
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    • 2006
  • A mixed adsorbent prepared by pyrolysing a mixture of carbon and flyash in 1:1 ratio was tested for its deceleration ability for three different classes of dyes namely, Astrazone Blue FRR(Basic Blue 69), Teflon flue ANL(Acid Blue 125) and Verofix Red(Reactive Red 3GL). Kinetic analyses were carried out at the optimum conditions obtained by the author in the previous studies. The data was fitted with three kinetic model equations. The results showed that the dye uptake mechanism followed the second-order rate expression.

Isolation of a Wood-rotting Fungus to Decolorize a Wide Range of Structurally Different Synthetic Dyes. (다양한 염료의 탈색이 가능한 목재부후균 분리)

    • Microbiology and Biotechnology Letters
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    • v.31 no.3
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    • pp.301-306
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    • 2003
  • Twenty-one different fungi were tested for their ability to decolorize a wide range of structurally different dyes. Twenty fungal strains were isolated from fruiting bodies which were collected at the Kwangneung National Arboretum, Korea. One fungal strain were isolated from a rotting wood at Soongsil University, Korea. Nine kinds of dyes were used: three anthraquinone dyes and six azo dyes. The five fungal strains, Laetiporus sulphureus, Polyporus arcularius. Auricularia polytricha, Stereum ostrea, and Bjerkandera sp. UK-l showed decolorization ability. Except Auricularia polytricha, the four fungal strains were wood rotting fungi, and belonged to Aphyllophorales. Bjerkandera sp. UK-I, which was a white rot fungus, could decolorize all kinds of dyes tested in this study, indicating this fungus is one of candidates for applying in biological methods of dye waste treatment.

Heterologous Expression of Phanerochaete chrysoporium Glyoxal Oxidase and its Application for the Coupled Reaction with Manganese Peroxidase to Decolorize Malachite Green

  • Son, Yu-Lim;Kim, Hyoun-Young;Thiyagarajan, Saravanakumar;Xu, Jing Jing;Park, Seung-Moon
    • Mycobiology
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    • v.40 no.4
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    • pp.258-262
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    • 2012
  • cDNA of the glx1 gene encoding glyoxal oxidase (GLX) from Phanerochaete chrysosporium was isolated and expressed in Pichia pastoris. The recombinant GLX (rGLX) produces $H_2O_2$ over 7.0 nmol/min/mL using methyl glyoxal as a substrate. Use of rGLX as a generator of $H_2O_2$ improved the coupled reaction with recombinant manganese peroxidase resulting in decolorization of malachite green up to $150{\mu}M$ within 90 min.

A Study on the Optimization of Reflector for Reactor Using Solar $Light/TiO_2$ (태양광/$TiO_2$ 반응기용 반사판 최적화에 관한 연구)

  • Kim, Dong-Seog;Park, Young-Seek
    • Journal of Environmental Health Sciences
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    • v.32 no.4 s.91
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    • pp.373-380
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    • 2006
  • The photocatalytic reactor using immobilized $TiO_2$ on silicone sealant was studied bench scale using solar light as the source of radiation. The influences of parameters such as shape, polishing extent and size of reflector, distance between reactor and reflector, an angle of inclination between reactor system and ground, were studies using Rhodamine B (RhB) as a model compound. respectively. The decolorization of round type among the reflector shapes was higher than that of the polygon and W type. The polishing extent of the reflector did not show the decolorization largely. The optimum size of reflector and distance between reactor and reflector were 38 cm and 6 cm, respectively.

Optimization of Ozone Oxidation process for Decolorization form dyeing wastewater (염색폐수 색도저감을 위한 오존산화공정의 최적화)

  • Sin, Dong-Hun;Choe, Jang-Seung;Lee, Sang-Heon;Kim, Seong-Jin;Ryu, Seung-Han;Park, Jun-Hyeong;Choe, Seong-Uk
    • Proceedings of the Korean Society of Dyers and Finishers Conference
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    • 2008.10a
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    • pp.115-116
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    • 2008
  • The textile wastewater discharged from printing and dyeing processes is characterized by high chemical oxygen demand(COD), low biochemical oxygen demand(BOD), and heavy color. The release of dyes into the environment constitutes only small proportion of water pollution, but dyes are visible in small quantities due to their brilliance. In this study, We are investigated to optimization of Ozone Oxidation process for Decolorization.

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Biodecolorization and Biodegradation of Dye by Fungi: A Review (곰팡이를 이용한 염료의 탈색 및 생분해)

  • Cho, Kyung-Suk;Ryu, Hee Wook
    • KSBB Journal
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    • v.30 no.5
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    • pp.203-222
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    • 2015
  • In recent years, there has been an intensive research on the application of degradative activities of fungi for treatment of various non-degradable materials such as petroleum hydrocarbons, polychlorinated biphenyls, pesticides, polycyclic aromatic hydrocarbons, dyes and so on. Chief of all, the fungal treatment technology is received the spotlight as one of the most promising alternatives to replace present methods for the treatment of dye wastewater. The present paper reviews the recent trend in research on the decolorization and biodegradation of dyes by various fungi, and improvements in bioreactors and bioprocesses involved the fungal treatment of dye wastewater. It also discusses alternatives and perspectives for the innovation of mycoremediation to treat dye wastewaters.

Decolorization of Acid Orange II from Aqueous Solutions using Loess (황토를 이용한 Acid Orange II의 색도제거)

  • Park, Jae Hong
    • Journal of Korean Society on Water Environment
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    • v.27 no.2
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    • pp.141-146
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    • 2011
  • Loess, a natural clay, was evaluated as an adsorbent for the decolorization of Acid Orange II, an azo and reactive dye, from aqueous solution. Adsorption studies were performed at $30^{\circ}C$ and the effect of reaction time, loess dosage, initial concentration, loess particle size, pH, agitation rate were investigated to determine the optimum operation conditions. The removal efficiencies of color were measured to evaluate the effectiveness of loess. From this study, it was found that optimal reaction time was 10 min. Color removal efficiencies of Acid Orange II were increased as higher loess dosage, initial concentration and agitation rate. However, color removal efficiencies decreased when pH is high and loess particle becomes large. Adsorption of Acid Orange II fitted to the pseudo-second-order rate kinetics more than first-order rate kinetics. Langmuir and Freundlich adsorption isotherm constants and correlation coefficients were calculated and compared. It was concluded that the adsorption data of Acid Orange II onto loess fitted to the Freundlich model more than Langmuir model.