In this study, the efficiency improvement of three moving bed biofilm reactors (MBBRs) was investigated by inoculation of activated sludge cells (R1), mixed culture of eight strong phenol-degrading bacteria consisted of Pseudomonas spp. and Acinetobacter spp. (R2) and the combination of both (R3). Biofilm formation ability of eight bacteria was assessed initially using different methods and media. Maximum degradation of phenol, COD, biomass growth and also changes in organic loading shock were used as parameters to measure the performance of reactors. According to the results, all eight strains were determined as enhanced biofilm forming bacteria (EBFB). Under optimum operating conditions, more than 90% of initial COD load of 2795 mg L−1 wa...
A newly isolated Acinetobacter baumannii strain Serdang 1 was explored for its potential in phenol r...
The opportunity to apply immobilized-cell biotechnological process in the remediation of polyethoxyl...
The kinetics of phenol degradation by an immobilized-bacterial system was carried out in a packed re...
For biological treatment of water, there are many different biofilm systems in use. Examples of them...
Phenolic wastewater was treated in a three-phase draft tube fluidized bed reactor containing biofilm...
Background: Phenolic compounds are found in wastewater of many industries such as pulp and paper, te...
A novel process configuration was designed to increase biofilm growth in tertiary moving bed biofilm...
This paper presents a study of the aerobic treatment of synthetic wastewater, in which phenol is the...
Moving bed biofilm reactors (MBBRs) are an effective biotechnology for treating industrial wastewate...
In the present study, improved moving bed biofilm reactor (MBBR) was applied to enhance the nutrient...
Phenol bioconversion by Pseudomonas stutzeri OX1 using either free or immobilized cells was investig...
This study assessed the role of a new Acinetobacter calcoaceticus strain, GSN3, with biofilm-forming...
Three moving bed biofilm reactors were used to treat synthesized wastewater of aromatic amine compou...
A brief introduction of the long history of biofilm-based wastewater treatment is given together wit...
Plastic biofilm carriers are used in biological wastewater treatment to encourage the attachment and...
A newly isolated Acinetobacter baumannii strain Serdang 1 was explored for its potential in phenol r...
The opportunity to apply immobilized-cell biotechnological process in the remediation of polyethoxyl...
The kinetics of phenol degradation by an immobilized-bacterial system was carried out in a packed re...
For biological treatment of water, there are many different biofilm systems in use. Examples of them...
Phenolic wastewater was treated in a three-phase draft tube fluidized bed reactor containing biofilm...
Background: Phenolic compounds are found in wastewater of many industries such as pulp and paper, te...
A novel process configuration was designed to increase biofilm growth in tertiary moving bed biofilm...
This paper presents a study of the aerobic treatment of synthetic wastewater, in which phenol is the...
Moving bed biofilm reactors (MBBRs) are an effective biotechnology for treating industrial wastewate...
In the present study, improved moving bed biofilm reactor (MBBR) was applied to enhance the nutrient...
Phenol bioconversion by Pseudomonas stutzeri OX1 using either free or immobilized cells was investig...
This study assessed the role of a new Acinetobacter calcoaceticus strain, GSN3, with biofilm-forming...
Three moving bed biofilm reactors were used to treat synthesized wastewater of aromatic amine compou...
A brief introduction of the long history of biofilm-based wastewater treatment is given together wit...
Plastic biofilm carriers are used in biological wastewater treatment to encourage the attachment and...
A newly isolated Acinetobacter baumannii strain Serdang 1 was explored for its potential in phenol r...
The opportunity to apply immobilized-cell biotechnological process in the remediation of polyethoxyl...
The kinetics of phenol degradation by an immobilized-bacterial system was carried out in a packed re...