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- W2375996831 abstract "In order to evaluate the application potential of Ceriporia lacerate P2 in treating dye wastewater,batch experiments were carried out in an air-opened system to investigate the effect of static and shaken culture,initial dye concentration,pH,temperature,salinity,carbon source,nitrogen source and metal ion on the decolorization of orange G dye wastewater by strain P2.Meanwhile,the toxicity test for the non-decolorizing dye and decolorizing products using plant seed germination method and antimicrobial test were also conducted.The results showed that,compared with shaken culture,static culture was more suitable for decolorization by C.lacerata P2,and the optimal pH and temperature were 9 and 25 ℃,respectively.The results of salinity test showed that the decolorization rate of orange G was above 70% in 128 g L-1 salt solution.Based on the system with optimal parameters,carbon source,nitrogen source and metal ion were separately added for choosing appropriate factors.The results indicated that the optimal condition for decolorization were as follows: 4 g L-1 glucose,0.15 g L-1 ammonium nitrate and 0.1 mmol L-1 zinc ion.The results of biosorption test showed that mycelial sorption played a minor role in decolorization,and the decolorization was primarily driven by the degrading enzymes.In this study,laccase activity was not detected,while only manganese peroxidase and lignin peroxidase were checked with a maximum activity of 230 U mL-1 and 158 U mL-1,respectively.The results of toxicity test suggested that,in comparison with non-decolorized dye,toxicity of decolorized solution on plant seed germination and microbial organism greatly declined.Therefore,C.lacerata P2 had a good application potential in treating orange G dye wastewater." @default.
- W2375996831 created "2016-06-24" @default.
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- W2375996831 date "2011-01-01" @default.
- W2375996831 modified "2023-09-23" @default.
- W2375996831 title "Toxicity Test and Decolorization of Simulated Orange G Dye Wastewater by Ceriporia lacerata P2 with a High-salinity Tolerance" @default.
- W2375996831 hasPublicationYear "2011" @default.
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