This study aim to enhance nitrogen removal performance via shifting nitrogen removal pathway from nitrate to nitrite pathway. It was demonstrated that nitrite pathway was successfully and stably achieved in CWs by using modified intermittent aeration control with aeration 20 min/non-aeration 100 min and reducing DO concentration during aeration, nitrite in the effluent could accumulate to over 70% of the total oxidized nitrogen. Q-PCR analysis showed that nitrifying microbial communities were optimized under the alternating anoxic and aerobic conditions, ammonia oxidizing bacteria increased from 7.15 x 10(6) to 8.99 x 10(6) copies/g, while nitrite oxidizing bacteria decreased approximately threefold after 234 days operation. Most importantl...
Despite of low operation costs and convenient maintenance, the application of natural systems for sw...
Summarization: Single-stage constructed wetlands (CWs) are characterized by a low potential for N re...
Project (M.S.)--Humboldt State University, Environmental Systems: Environmental Resource Engineering...
This study aim to enhance nitrogen removal performance via shifting nitrogen removal pathway from ni...
A new development on treatment wetland technology for the purpose of achieving high rate nitrogen re...
Four laboratory-scale, submerged flow constructed wetland (SFCW) mesocosms (Juncus effesus) were use...
In this study, the combined effect of dissolved oxygen (DO) and COD/N on nitrogen (N) removal as wel...
In this study, an intermittent-aerated subsurface flow constructed wetland (SFCW) A was set up to as...
This study proposed a novel intermittent-aeration constructed wetland (CW) to resolve the vertical l...
Tidal flow constructed wetlands (TF CWs) have recently been studied as a sustainable technology to a...
A laboratory-scale vertical flow constructed wetland system was designed and monitored to compare ni...
A multistage mesocosm vertical flow constructed wetland system was designed to treat synthetic domes...
While constructed wetlands (CWs) have been applied successfully to achieve contaminant removal from ...
This study aimed to investigate nitrogen mass removal rates and microorganisms in planted columns th...
The performance response of eight vertical flow constructed wetlands (VFCWs) to different influent C...
Despite of low operation costs and convenient maintenance, the application of natural systems for sw...
Summarization: Single-stage constructed wetlands (CWs) are characterized by a low potential for N re...
Project (M.S.)--Humboldt State University, Environmental Systems: Environmental Resource Engineering...
This study aim to enhance nitrogen removal performance via shifting nitrogen removal pathway from ni...
A new development on treatment wetland technology for the purpose of achieving high rate nitrogen re...
Four laboratory-scale, submerged flow constructed wetland (SFCW) mesocosms (Juncus effesus) were use...
In this study, the combined effect of dissolved oxygen (DO) and COD/N on nitrogen (N) removal as wel...
In this study, an intermittent-aerated subsurface flow constructed wetland (SFCW) A was set up to as...
This study proposed a novel intermittent-aeration constructed wetland (CW) to resolve the vertical l...
Tidal flow constructed wetlands (TF CWs) have recently been studied as a sustainable technology to a...
A laboratory-scale vertical flow constructed wetland system was designed and monitored to compare ni...
A multistage mesocosm vertical flow constructed wetland system was designed to treat synthetic domes...
While constructed wetlands (CWs) have been applied successfully to achieve contaminant removal from ...
This study aimed to investigate nitrogen mass removal rates and microorganisms in planted columns th...
The performance response of eight vertical flow constructed wetlands (VFCWs) to different influent C...
Despite of low operation costs and convenient maintenance, the application of natural systems for sw...
Summarization: Single-stage constructed wetlands (CWs) are characterized by a low potential for N re...
Project (M.S.)--Humboldt State University, Environmental Systems: Environmental Resource Engineering...