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Kinetics of phenol and m-cresol biodegradation by an indigenous mixed microbial culture isolated from a sewage treatment plant 被引量:7
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作者 Pichiah Saravanan kannan pakshirajan Prabirkumar Saha 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2008年第12期1508-1513,共6页
An acclimatized mixed microbial culture,predominantly Pseudomonas sp.,was enriched from a sewage treatment plant,and its potential to simultaneously degrade mixtures of phenol and m-cresol was investigated during its ... An acclimatized mixed microbial culture,predominantly Pseudomonas sp.,was enriched from a sewage treatment plant,and its potential to simultaneously degrade mixtures of phenol and m-cresol was investigated during its growth in batch shake flasks.A 22 full factorial design with the two substrates at two different levels and different initial concentration ranges(low and high),was employed to carry out the biodegradation experiments.The substrates phenol and m-cresol were completely utilized within 21 h when ... 展开更多
关键词 BIODEGRADATION factorial design of experiments KINETICS M-CRESOL mixed microbial culture PHENOL sum kinetics model
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Modelling the Biomass Growth and Enzyme Secretion by the White Rot Fungus <i>Phanerochaete Chrysosporium</i>in Presence of A Toxic Pollutant
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作者 Kausik Sen kannan pakshirajan Sitangshu Bikas Santra 《Journal of Environmental Protection》 2012年第1期114-119,共6页
The white rot fungus Phanerochaete chrysosporium is well known for its ability to degrade toxic pollutants owing to its efficient extracellular ligninase system. However, biomass growth and enzyme secretion in presenc... The white rot fungus Phanerochaete chrysosporium is well known for its ability to degrade toxic pollutants owing to its efficient extracellular ligninase system. However, biomass growth and enzyme secretion in presence of toxic pollutant is not well understood. In the present study, using the model azo dye Direct Red-80, biomass growth and lignin peroxidase secretion by the fungus was studied during its degradation and a stochastic based model was applied to simulate the behavior of the fungus. Also, glucose concentration in the medium was varied in order to observe its effect on the dye degradation. Results revealed that glucose at an optimum concentration of 10 gL-1 is essential for biomass growth, LiP secretion, as well as the dye decolourization. Modeling the behavior of the fungus with the presence of both glucose and dye has shown significant similarity. 展开更多
关键词 TOXIC POLLUTANT PHANEROCHAETE CHRYSOSPORIUM DR-80 Dye Decolourization Stochastic Model Lignin Peroxidase
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Metallic wastewater treatment by sulfate reduction using anaerobic rotating biological contactor reactor under high metal loading conditions
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作者 Mothe Gopi Kiran kannan pakshirajan Gopal Das 《Frontiers of Environmental Science & Engineering》 SCIE EI CAS CSCD 2018年第4期119-129,共11页
This study was aimed at investigating the performance of anaerobic rotating biological cont- reactor treating synthetic wastewater containing a mixture of heavy metals under sulfate redu condition. Statistically valid... This study was aimed at investigating the performance of anaerobic rotating biological cont- reactor treating synthetic wastewater containing a mixture of heavy metals under sulfate redu condition. Statistically valid factorial design of experiments was carried out to understand dynamics of metal removal using this bioreactor system. Copper removal was maximum (〉98% followed by other heavy metals at their respective low inlet concentrations. Metal loading rates than 3.7 mg/L· h in case of Cu(II); less than 1.69 mg/L· h for Ni(II), Pb(II), Zn(II), Fe(III) and C are favorable to the performance of the An-RBC reactor. Removal efficiency of the heavy metals 1 mixture depended on the metal species and their inlet loading concentrations. Analysis of n precipitates formed in the sulfidogenic bioreactor by field emission scanning electron microscopyalong with energy dispersive X-ray spectroscopy (FESEM-EDX) confirmed metal sulfide precipitationby SRB. All these results clearly revealed that the attached growth biofilm bioreactor is well suited for heavy metal removal from complex mixture. 展开更多
关键词 Factorial design analysis Sulfate reducing bacteria Multi-metal solution Heavy metal removal Anaerobic rotating biological contactorreactor High metal loading
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