WOS: 000227569000042Pseudomonas putida was acclimized to phenol by increase in concentration and the degradation rate was calculated as approximately 0.042 g l(-1) h(-1) in batch shake flask cultures. Phenol degradation by P. putida immobilized on several silica based support materials was investigated. Pumice was chosen as a support material and then partially characterized physically and chemically. The cell adsorption ratio was 91% with Zr-activated pumice. The biocatalyst completely degraded 1.0 g l(-1) phenol in the batch shaking system in 22 h and it was also used in recycled and continuous mode packed bed bioreactors for phenol degradation. The performance of the bioreactor was tested by running five times and it was observed that th...
A mathematical model is proposed to analyze the mass transfer limitations in phenol biodegradation u...
Preliminary results on phenol conversion by Pseudomonas stutzeri OX1 are reported. Conversion was ca...
Department of Chemical Engineering and Technology, Indian Institute of Technology (BHU), Varanasi-22...
Biodegradation is the breakdown of a compound by a biological organism. Over the past few decades, t...
The kinetics of phenol degradation by an immobilized-bacterial system was carried out in a packed re...
The best operating conditions for phenol degradation by immobilized Pseudomonas sp in packed column ...
This paper presents a study of the aerobic treatment of synthetic wastewater, in which phenol is the...
IV ABSTRACT BIODEGRADATION OF PHENOL FROM INDUSTRIAL WASTEWATERS BY USING IMMOBILIZED Pseudomonas pu...
Biotreatment using immobilized cells (IC) technology has proved to be the most promising and most ec...
Biodegradation of phenol by predominantly Pseudomonas species isolated from a sewage wastewater trea...
Biodegradation of phenol and 4-chlorophenol (4CP) using Pseudomonas putida (ATCC 17514) was studied ...
The biodegradation kinetics of 4-chlorophenol (4-CP) and phenol and microbial growth of Pseudomonas ...
The potential of various organisms to metabolize organic compounds has been observed to be a potenti...
Phenol is a cognizant industrial contaminant in wastewaters from various industries, in this bioreme...
565-567Pure cultures of pseudomonas putida, Nocardia sp., Bacillus circulans and a mixed culture, is...
A mathematical model is proposed to analyze the mass transfer limitations in phenol biodegradation u...
Preliminary results on phenol conversion by Pseudomonas stutzeri OX1 are reported. Conversion was ca...
Department of Chemical Engineering and Technology, Indian Institute of Technology (BHU), Varanasi-22...
Biodegradation is the breakdown of a compound by a biological organism. Over the past few decades, t...
The kinetics of phenol degradation by an immobilized-bacterial system was carried out in a packed re...
The best operating conditions for phenol degradation by immobilized Pseudomonas sp in packed column ...
This paper presents a study of the aerobic treatment of synthetic wastewater, in which phenol is the...
IV ABSTRACT BIODEGRADATION OF PHENOL FROM INDUSTRIAL WASTEWATERS BY USING IMMOBILIZED Pseudomonas pu...
Biotreatment using immobilized cells (IC) technology has proved to be the most promising and most ec...
Biodegradation of phenol by predominantly Pseudomonas species isolated from a sewage wastewater trea...
Biodegradation of phenol and 4-chlorophenol (4CP) using Pseudomonas putida (ATCC 17514) was studied ...
The biodegradation kinetics of 4-chlorophenol (4-CP) and phenol and microbial growth of Pseudomonas ...
The potential of various organisms to metabolize organic compounds has been observed to be a potenti...
Phenol is a cognizant industrial contaminant in wastewaters from various industries, in this bioreme...
565-567Pure cultures of pseudomonas putida, Nocardia sp., Bacillus circulans and a mixed culture, is...
A mathematical model is proposed to analyze the mass transfer limitations in phenol biodegradation u...
Preliminary results on phenol conversion by Pseudomonas stutzeri OX1 are reported. Conversion was ca...
Department of Chemical Engineering and Technology, Indian Institute of Technology (BHU), Varanasi-22...