The Bipolar Membrane Electrodialysis process (BPMED) can produce valuable chemicals such as acid (HCl, H2SO4, etc.) and base (NaOH) from saline and brackish waters under the influence of an electrical field. In this study, BPMED was used to recover wastewater and salt in biologically treated textile wastewater (BTTWW). BPMED process, with and without pre-treatment (softening and ozonation), was evaluated under different operational conditions. Water quality parameters (color, remaining total organic carbon, hardness, etc.) in the acid, base and filtrated effluents of the BPMED process were evaluated for acid, base, and wastewater reuse purposes. Ozone oxidation decreased 90% of color and 37% of chemical oxygen demand (COD) in BTTWW. As a re...
[EN] The interference of human beings in the environment is causing rapid intense environmental dama...
ECUVal system is based on the in situ degradation of organic compounds contained in saline effluents...
In this study, it is aimed to investigate the potential of electrodialysis bipolar membrane (EDBM) s...
The Bipolar Membrane Electrodialysis process (BPMED) can produce valuable chemicals such as acid (HC...
Extremely high volumes of salty wastewater are produced by textile manufacturers daily. Therefore, b...
The “reactive” dyeing of textiles requires an application of low-molecular-weight salts ...
496-500This study presents biotreatment of textile wastewaters using electrocoagulation and ozone p...
To achieve a cleaner production, textile wastewater with high organic and salt content can be treate...
The study investigates the effect of partial ozonation of textile wastewater, both at the inlet (pre...
The large amount of wastewater produced by the textile industry necessitates a cost-effective techno...
In this work, textile wastewater is explored for resource recovery in a hybrid loose nanofiltration ...
In this work, a pilot plant consisting of granular activated carbon (GAC), ultrafiltration (UF), nan...
The reduced natural waters and the large amount of wastewater produced by textile industry necessita...
Textile wastewater is generated during the dye production and textile dyeing process and typically h...
Metal wastewater and saline wastewater are two major problems in the field of wastewater treatment. ...
[EN] The interference of human beings in the environment is causing rapid intense environmental dama...
ECUVal system is based on the in situ degradation of organic compounds contained in saline effluents...
In this study, it is aimed to investigate the potential of electrodialysis bipolar membrane (EDBM) s...
The Bipolar Membrane Electrodialysis process (BPMED) can produce valuable chemicals such as acid (HC...
Extremely high volumes of salty wastewater are produced by textile manufacturers daily. Therefore, b...
The “reactive” dyeing of textiles requires an application of low-molecular-weight salts ...
496-500This study presents biotreatment of textile wastewaters using electrocoagulation and ozone p...
To achieve a cleaner production, textile wastewater with high organic and salt content can be treate...
The study investigates the effect of partial ozonation of textile wastewater, both at the inlet (pre...
The large amount of wastewater produced by the textile industry necessitates a cost-effective techno...
In this work, textile wastewater is explored for resource recovery in a hybrid loose nanofiltration ...
In this work, a pilot plant consisting of granular activated carbon (GAC), ultrafiltration (UF), nan...
The reduced natural waters and the large amount of wastewater produced by textile industry necessita...
Textile wastewater is generated during the dye production and textile dyeing process and typically h...
Metal wastewater and saline wastewater are two major problems in the field of wastewater treatment. ...
[EN] The interference of human beings in the environment is causing rapid intense environmental dama...
ECUVal system is based on the in situ degradation of organic compounds contained in saline effluents...
In this study, it is aimed to investigate the potential of electrodialysis bipolar membrane (EDBM) s...