Water Sanitizer

NaOCl, HOCl

Application of e-ETP/e-STP

clock May 28, 2020 17:48 by author admin
The most general layout comprises two electrodes, operating as anode and cathode, connected to a power source. When an energy input and sufficient supporting electrolyte are provided to the system, strong oxidizing species are formed, which interact with the contaminants and degrade them. The refractory compounds are thus converted into reaction intermediates and, ultimately, into water and CO2 by complete mineralization [More]


TIAANO's e-ETP/e-STP SYSTEM's SPECIAL FEATURES

clock May 27, 2020 18:44 by author admin
The e-ETP system concluded that current density, initial pH, electrolyte species, initial concentration of dye produce the effects upon the removal of C.I. Reactive Red 241 by electrocoagulation in regards to decolorization. From the results, it was determined that dye removal was a first order reaction, where the COD removal could be determined using the artificial neutral network (ANN) and response surface method. [More]


Waste Water Treatment by Electrolytic Method

clock May 26, 2020 16:03 by author admin
The Electro Oxidation methodologies solve the problem of the final disposal of sludge; because when they are well developed, there is no production of sludge. Obviously, not always is possible the complete mineralization of contaminates. [More]


ELECTROLYTIC EFFLUENT TREATMENT PLANT (e-ETP)

clock May 25, 2020 19:44 by author admin
Electrochemical oxidation is considered a robust technology and is easy to use, for those reasons, it has been used for a diversity of wastewater treatments. The main advantages of this technology over other conventional treatments are as follows: the main reagent is the electron; many processes occur in the electrochemical cell; the addition of chemicals is not required; and the process is carried out at room temperature and atmospheric pressure. [More]


Tiaano e-ETP/e-STP Waste Water Treatment Plant

clock May 22, 2020 15:35 by author admin
The final goal of AOPS is the complete degradation of the pollutants present in wastewater, aiming its final mineralization, yielding as final products: carbon dioxide, water and inorganic compounds [More]


TIAANO's ELECTROLYTIC SEWAGE TREATMENT PLANT(e-STP)

clock May 21, 2020 18:51 by author admin
The Tiaano's advanced oxidation processes (AOPs), in which the HO• radical production is favored, could represent an interesting option for treat wastewater with less or without sludge production. [More]


TIAANO's ELECTROLYTIC SEWAGE TREATMENT PLANT(e-STP)

clock May 21, 2020 18:51 by author admin
The Tiaano's advanced oxidation processes (AOPs), in which the HO• radical production is favored, could represent an interesting option for treat wastewater with less or without sludge production. [More]


TIAANO's ELECTROLYTIC SEWAGE TREATMENT PLANT(e-STP)

clock May 20, 2020 16:41 by author admin
The most general layout comprises two electrodes, operating as anode and cathode, connected to a power source. When an energy input and sufficient supporting electrolyte are provided to the system, strong oxidizing species are formed, which interact with the contaminants and degrade them. The refractory compounds are thus converted into reaction intermediates and, ultimately, into water and CO2 by complete mineralization [More]


Tiaano Waste Water Treatment by Electrolytic Method

clock May 19, 2020 18:06 by author admin
Electro-oxidation (EO), also known as anodic oxidation, is a technique used for wastewater treatment, mainly for industrial effluents, and is a type of advanced oxidation process (AOP [More]


ELECTROLYTIC EFFLUENT TREATMENT PLANT (e-ETP) USING ELECTRO OXIDATION

clock May 18, 2020 17:21 by author admin
Electro-oxidation (EO), also known as anodic oxidation, is a technique used for wastewater treatment, mainly for industrial effluents, and is a type of advanced oxidation process (AOP).[1] The most general layout comprises two electrodes, operating as anode and cathode, connected to a power source. When an energy input and sufficient supporting electrolyte are provided to the system, strong oxidizing species are formed, which interact with the contaminants and degrade them. The refractory compounds are thus converted into reaction intermediates and, ultimately, into water and CO2 by complete mineralization [More]


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