Nitrate removal from low carbon water is a problem in the water treatment, especially in the presence of high sulfate. In this work, an up-flow three-dimensional biofilm electrode reactor (3D-BER) was established to remove nitrate and sulfate from low organic carbon water. Results indicated that sulfate negatively affected nitrate removal. Moreover, high electric current and short hydraulic retention time deteriorated the performance of nitrate and sulfate removal. When the influent of SO42- was 150 mg/L, the removal efficiency of NO3 -N and SO42- was 88.49 +/- 4.5% and 29.35 +/- 5.5%, respectively. The high-throughput sequencing revealed that denitrifying bacteria dominated in the lower part of the reactor while sulfate reducing bacteria d...
Nanofiltration systems are mostly applicable in removing small soluble particles in water. This st...
Chemolithotrophic denitrification is an inexpensive and advantageous process for nitrate removal and...
University of Minnesota M.S. thesis. July 2018. Major: Water Resources Science. Advisor: Chanlan Chu...
Nitrate removal from low carbon water is a problem in the water treatment, especially in the presenc...
This study investigated the performance of an autohydrogenotrophic membrane biofilm reactor (MBfR) t...
Nitrogen removal is a problem in the field of water treatment, especially in the presence of sulfate...
The biofilm-electrode reactor coupled with sulfur autotrophic denitrification process (BER-SAD) was ...
This study addresses the applicability of simultaneous nitrate and sulfide removal using two-chamber...
In recent years, the removal of nitrate as a global soil and water contaminant has been increasingly...
<div><p>Nitrate decreases sulfide release in wastewater treatment plants (WWTP), but little is known...
Nitrogen removal is a problem in the field of water treatment, especially in the presence of sulfate...
Effects of NO3-/SO42- ratio on denitrification and sulfate removal efficiency were investigated in m...
abstract: Nitrate (NO3- ) and selenate (SeO42-) are common contaminants found in mining wastewater. ...
Abstract The aim of this study was to develop a biological method for the simultaneous removal of s...
In this research an up-flow undivided bio-electrochemical reactor is used for treating simultaneous...
Nanofiltration systems are mostly applicable in removing small soluble particles in water. This st...
Chemolithotrophic denitrification is an inexpensive and advantageous process for nitrate removal and...
University of Minnesota M.S. thesis. July 2018. Major: Water Resources Science. Advisor: Chanlan Chu...
Nitrate removal from low carbon water is a problem in the water treatment, especially in the presenc...
This study investigated the performance of an autohydrogenotrophic membrane biofilm reactor (MBfR) t...
Nitrogen removal is a problem in the field of water treatment, especially in the presence of sulfate...
The biofilm-electrode reactor coupled with sulfur autotrophic denitrification process (BER-SAD) was ...
This study addresses the applicability of simultaneous nitrate and sulfide removal using two-chamber...
In recent years, the removal of nitrate as a global soil and water contaminant has been increasingly...
<div><p>Nitrate decreases sulfide release in wastewater treatment plants (WWTP), but little is known...
Nitrogen removal is a problem in the field of water treatment, especially in the presence of sulfate...
Effects of NO3-/SO42- ratio on denitrification and sulfate removal efficiency were investigated in m...
abstract: Nitrate (NO3- ) and selenate (SeO42-) are common contaminants found in mining wastewater. ...
Abstract The aim of this study was to develop a biological method for the simultaneous removal of s...
In this research an up-flow undivided bio-electrochemical reactor is used for treating simultaneous...
Nanofiltration systems are mostly applicable in removing small soluble particles in water. This st...
Chemolithotrophic denitrification is an inexpensive and advantageous process for nitrate removal and...
University of Minnesota M.S. thesis. July 2018. Major: Water Resources Science. Advisor: Chanlan Chu...