Integrated algae pond systems (IAPS) combine the use of anaerobic and aerobic bioprocesses to effect wastewater treatment. Although, IAPS as a technology process offers many advantages including efficient and simultaneous N and P removal, no requirement for additional chemicals, O2 generation, CO2 mitigation, and a biomass with potential for valorization, a lack of technological advancement and the need for large land area, has limited the reach of this technology at industrial scale. In mitigation, peroxonation was introduced as a tertiary treatment unit and its effect on COD and TSS of IAPS treated water investigated. An effort was made to characterize the soluble but persistent COD in IAPS treated water and, productivity of the HRAOP mix...
Treating municipal wastewater is necessary to limit the impact carbonaceous, nitrogenous and phospho...
Different species of microalgae are highly efficient in removing nutrients from wastewater streams a...
In order to move towards a more sustainable future, human civilization will need to decrease its imp...
Integrated algae pond systems (IAPS) combine the use of anaerobic and aerobic bioprocesses to effect...
Despite the dire state of sanitation infrastructures, water scarcity, and the dwindling reserve of n...
Integrated algae pond systems are a derivation of the Oswald designed advanced integrated wastewater...
Algal biofuels present a promising future alternative to petroleum based fuels. Water nutrient recyc...
Integrated Algae Pond Systems (IAPS) are a derivation of the Oswald designed Algal Integrated Wastew...
Integrated algal pond systems (IAPS) are a passive water treatment technology derived from the Oswal...
While treating domestic wastewater, algae can be grown and harvested for biofuel production. Water i...
This book chapter demonstrated that the filamentous algae could be used as a promising phycoremediat...
Concerns about climate changes and global water crisis are increasing, considering the low freshwate...
Integrated Algae Pond Systems (IAPS) are a derivation of the Oswald-designed Algal Integrated Wastew...
Microalgae can be grown on municipal wastewater media to both treat the wastewater and produce feeds...
This thesis discusses the mechanisms associated with the removal of organic matter, nitrogen and pho...
Treating municipal wastewater is necessary to limit the impact carbonaceous, nitrogenous and phospho...
Different species of microalgae are highly efficient in removing nutrients from wastewater streams a...
In order to move towards a more sustainable future, human civilization will need to decrease its imp...
Integrated algae pond systems (IAPS) combine the use of anaerobic and aerobic bioprocesses to effect...
Despite the dire state of sanitation infrastructures, water scarcity, and the dwindling reserve of n...
Integrated algae pond systems are a derivation of the Oswald designed advanced integrated wastewater...
Algal biofuels present a promising future alternative to petroleum based fuels. Water nutrient recyc...
Integrated Algae Pond Systems (IAPS) are a derivation of the Oswald designed Algal Integrated Wastew...
Integrated algal pond systems (IAPS) are a passive water treatment technology derived from the Oswal...
While treating domestic wastewater, algae can be grown and harvested for biofuel production. Water i...
This book chapter demonstrated that the filamentous algae could be used as a promising phycoremediat...
Concerns about climate changes and global water crisis are increasing, considering the low freshwate...
Integrated Algae Pond Systems (IAPS) are a derivation of the Oswald-designed Algal Integrated Wastew...
Microalgae can be grown on municipal wastewater media to both treat the wastewater and produce feeds...
This thesis discusses the mechanisms associated with the removal of organic matter, nitrogen and pho...
Treating municipal wastewater is necessary to limit the impact carbonaceous, nitrogenous and phospho...
Different species of microalgae are highly efficient in removing nutrients from wastewater streams a...
In order to move towards a more sustainable future, human civilization will need to decrease its imp...