This study presents the oxygenic photogranule (OPG) process, a light-driven process for wastewater treatment, developed based on photogranulation of filamentous cyanobacteria, nonphototrophic bacteria, and microalgae. Unlike other biogranular processes requiring airlift or upflow-based mixing, the OPG process was operated in stirred-tank reactors without aeration. Reactors were seeded with hydrostatically grown photogranules and operated in a sequencing-batch mode for five months to treat wastewater. The new reactor biomass propagated with progression of photogranulation under periodic light/dark cycles. Due to effective biomass separation from water, the system was operated with short settling time (10 min) with effective decoupling of hyd...
Wastewater characteristics can vary significantly, and in some municipal wastewaters the N:P ratio i...
The need for aeration when treating wastewater is the most extensive energy requirement wastewater t...
Oxygenic photogranules couple oxygen production through photosynthesis to heterotrophic respiration....
Wastewater generation is a worldwide problem, and its treatment is an important practice for maintai...
Photogranules are a novel wastewater treatment technology that can utilize the sun's energy to treat...
In recent years, the oxygenic photogranule (OPG) process has gained increasing interest because of i...
Oxygenic photogranules (OPGs) are roughly spherical aggregates with diameters of several millimeters...
Abstract Recently, the use of phototrophs for wastewater treatment has been revisited because of new...
Treating wastewater is imperative for maintaining public health and sanitation as well as the natura...
Photogranular biomass has yet to be utilized at large scale for wastewater treatment despite their p...
Oxygenic photogranules (OPGs) are compact, spherical, self-immobilizing biofilms in the form of dens...
Conventional process schemes of municipal sewage water treatment, advantages, and disadvantages of t...
Conventional process schemes of municipal sewage water treatment, advantages, and disadvantages of t...
Microorganisms often respond to their environment by growing as densely packed communities in biofil...
The commingled microbial moiety of oxygenic photogranules (OPGs) facilitates aeration-free wastewate...
Wastewater characteristics can vary significantly, and in some municipal wastewaters the N:P ratio i...
The need for aeration when treating wastewater is the most extensive energy requirement wastewater t...
Oxygenic photogranules couple oxygen production through photosynthesis to heterotrophic respiration....
Wastewater generation is a worldwide problem, and its treatment is an important practice for maintai...
Photogranules are a novel wastewater treatment technology that can utilize the sun's energy to treat...
In recent years, the oxygenic photogranule (OPG) process has gained increasing interest because of i...
Oxygenic photogranules (OPGs) are roughly spherical aggregates with diameters of several millimeters...
Abstract Recently, the use of phototrophs for wastewater treatment has been revisited because of new...
Treating wastewater is imperative for maintaining public health and sanitation as well as the natura...
Photogranular biomass has yet to be utilized at large scale for wastewater treatment despite their p...
Oxygenic photogranules (OPGs) are compact, spherical, self-immobilizing biofilms in the form of dens...
Conventional process schemes of municipal sewage water treatment, advantages, and disadvantages of t...
Conventional process schemes of municipal sewage water treatment, advantages, and disadvantages of t...
Microorganisms often respond to their environment by growing as densely packed communities in biofil...
The commingled microbial moiety of oxygenic photogranules (OPGs) facilitates aeration-free wastewate...
Wastewater characteristics can vary significantly, and in some municipal wastewaters the N:P ratio i...
The need for aeration when treating wastewater is the most extensive energy requirement wastewater t...
Oxygenic photogranules couple oxygen production through photosynthesis to heterotrophic respiration....