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Journal Article 5

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2023 1

2016 1

2015 1

2013 1

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decolorization 3

Lactarius deliciosus mycelia 1

Aeromonas hydrophila DN322p 1

Staphylococcus cohnii 1

Coomassie brilliant blue G-250 1

Fe-Mn-sepiolite catalyst 1

Nicotineamide adenine dinucleotide-dichlorophenol indophenol (NADH-DCIP) reductase 1

azoreductase 1

biosorption 1

biotransformation 1

catalytic ozonation 1

ceramic honeycomb 1

crystal violet 1

heterogeneous Fenton-like 1

homogeneous precipitation method 1

hydroxyl radical 1

hydroxyl radical (OH·) 1

immobilization 1

polylysine-alginate beads 1

reactive brilliant blue 1

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Immobilization and characterization of the mycelia-embedded polylysine-alginate beads and their decolorization

Frontiers of Chemical Science and Engineering 2023, Volume 17, Issue 12,   Pages 2001-2013 doi: 10.1007/s11705-023-2341-9

Abstract: Liquid fermented fungal mycelia with decolorization capability have potential applications in scale-upLactarius deliciosus mycelia were immobilized on -polylysine-alginate beads, and the decolorizationIt was manifested that the maximum decolorization efficiency for mycelia was 98.5% at a removal rateIn comparison, the decolorization efficiency of the immobilized mycelia reached the maximum value ofThe immobilization of L. deliciosus mycelia could improve the decolorization of Coomassie brilliant

Keywords: Lactarius deliciosus mycelia     immobilization     decolorization     polylysine-alginate beads     Coomassie    

Decolorization of azo dyes by a salt-tolerant

Bin YAN, Cuihong DU, Meilan XU, Wenchao LIAO

Frontiers of Environmental Science & Engineering 2012, Volume 6, Issue 6,   Pages 806-814 doi: 10.1007/s11783-012-0453-4

Abstract: The optimal conditions for azo dye acid red B (ARB) decolorization by were determined to be pH= 7.0The decolorization efficiency increased with the increase of the salinity concentration, and around 90%Meanwhile, the dependence of the specific decolorization rate by on the ARB concentration could beThe decolorization products of ARB were analyzed by HPLC-MS, and the results indicated the reductivepathway was responsible for azo dye decolorization by .

Keywords: Staphylococcus cohnii     decolorization     salt     azoreductase     Nicotineamide adenine dinucleotide-dichlorophenol    

Catalytic ozonation of reactive red X-3B in aqueous solution under low pressure: decolorization and OH

Hong SUN,Min SUN,Yaobin ZHANG,Xie QUAN

Frontiers of Environmental Science & Engineering 2015, Volume 9, Issue 4,   Pages 591-595 doi: 10.1007/s11783-014-0694-5

Abstract: Catalytic ozonation of Reactive Red X-3B in aqueous solution had been carried out in an ozone oxidation reactor where Mn-Fe-ceramic honeycomb was used as the catalysts. The presence of Mn-Fe-ceramic honeycomb catalyst could obviously improve the decoloration efficiency of Reactive Red X-3B and the utilization efficiency of ozone compared to the results from non-catalytic ozonation. Adsorption of Reactive Red X-3B had no obviously influence on the degradation efficiency. Addition of tert-butanol significantly decreased the degradation efficiency, indicating that the degradation of Reactive Red X-3B followed the mechanism of hydroxyl radical (OH·) oxidation. The operating variables such as reaction pressure and ozone supply had a positive influence on the degradation efficiency, mainly attributing to facilitate the ozone decomposition and OH· formation.

Keywords: catalytic ozonation     reactive red X-3B     ceramic honeycomb     hydroxyl radical (OH·)    

Fe-Mn-sepiolite as an effective heterogeneous Fenton-like catalyst for the decolorization of reactive

Chengyuan SU,Weiguang LI,Xingzhe LIU,Xiaofei HUANG,Xiaodan YU

Frontiers of Environmental Science & Engineering 2016, Volume 10, Issue 1,   Pages 37-45 doi: 10.1007/s11783-014-0729-y

Abstract: A study of the decolorization of reactive brilliant blue in an aqueous solution using Fe-Mn-sepiolite2.5, [reactive brilliant blue] = 50 mg·L , and volume of solution= 500 mL at room temperature, the decolorization

Keywords: Fe-Mn-sepiolite catalyst     heterogeneous Fenton-like     reactive brilliant blue     homogeneous precipitation method     hydroxyl radical    

Biosorption and biotransformation of crystal violet by

Tao PAN, Suizhou REN, Jun GUO, Meiying XU, Guoping SUN

Frontiers of Environmental Science & Engineering 2013, Volume 7, Issue 2,   Pages 185-190 doi: 10.1007/s11783-012-0435-6

Abstract: As a common triphenylmethane dye, crystal violet (CV) was chosen to test the decolorization characteristicsA 99% (w/w) decolorization rate was achieved within 2.5 h with shaking at 30°C for 50 mg CV·L .

Keywords: crystal violet     decolorization     biosorption     biotransformation     Aeromonas hydrophila DN322p    

Title Author Date Type Operation

Immobilization and characterization of the mycelia-embedded polylysine-alginate beads and their decolorization

Journal Article

Decolorization of azo dyes by a salt-tolerant

Bin YAN, Cuihong DU, Meilan XU, Wenchao LIAO

Journal Article

Catalytic ozonation of reactive red X-3B in aqueous solution under low pressure: decolorization and OH

Hong SUN,Min SUN,Yaobin ZHANG,Xie QUAN

Journal Article

Fe-Mn-sepiolite as an effective heterogeneous Fenton-like catalyst for the decolorization of reactive

Chengyuan SU,Weiguang LI,Xingzhe LIU,Xiaofei HUANG,Xiaodan YU

Journal Article

Biosorption and biotransformation of crystal violet by

Tao PAN, Suizhou REN, Jun GUO, Meiying XU, Guoping SUN

Journal Article