A portable OH radical scavenging demand analyzer that can be installed and operated on site was developed to measure water quality indicators that influence the generation of OH radicals from UV/hydrogen peroxide reactions to determine the UV dose and the hydrogen peroxide injection concentration. Rhodamine B (RhB) was used as an indicator for the continuous measurement of the OH radical scavenging demand of four samples with different water quality parameters using the rapid, easy, and real-time UV-Vis spectrophotometer method. The results demonstrated that the estimated rate constant for the RhB color decay rate resulting from direct UV photolysis was low enough to verify its suitability as a probe compound. The mean values of the OH radi...
AbstractAt present, the monitoring for chemical oxygen demand (COD) is mostly based on the chemical ...
The determination of OH radical scavenger capacity (ORSC) was performed using a new electrochemical ...
The wastewater produced by industrial processes contains many dissolved hazardous chemicals. The rem...
The use of two online sensors, the S::CAN and the FLD, was used to evaluate the treatment of synthet...
The aim of this research is to build a portable system to perform real-time analysis ofwaste water s...
In this study, the effectiveness of a rhodamine B (RhB) dye degradation process at a concentration o...
Organic micropollutants (MPs) are increasingly detected in water resources, which can be a concern f...
A spectrophotometric method was developed to measure antioxidant free-radical scavenging capacity. R...
Abstract The focus of this study is to evaluate the efficiency of oxidation processes in the treatme...
The aim of this study was to develop a portable optical instrument to measure the scavenging capacit...
A ranking system for monitoring-based process control was developed to select indicator compounds th...
A method for evaluating hydroxyl radical (・OH) scavenging activities using sequential injection anal...
The UV photolysis of persulfate (S2O8 2−) is a novel advanced oxidation technologies (AOTs), which l...
Hydrogen peroxide (H2O2) is frequently used in combination with ultraviolet (UV) light to treat trac...
Water quality monitoring is an essential component of water quality management for water utilities f...
AbstractAt present, the monitoring for chemical oxygen demand (COD) is mostly based on the chemical ...
The determination of OH radical scavenger capacity (ORSC) was performed using a new electrochemical ...
The wastewater produced by industrial processes contains many dissolved hazardous chemicals. The rem...
The use of two online sensors, the S::CAN and the FLD, was used to evaluate the treatment of synthet...
The aim of this research is to build a portable system to perform real-time analysis ofwaste water s...
In this study, the effectiveness of a rhodamine B (RhB) dye degradation process at a concentration o...
Organic micropollutants (MPs) are increasingly detected in water resources, which can be a concern f...
A spectrophotometric method was developed to measure antioxidant free-radical scavenging capacity. R...
Abstract The focus of this study is to evaluate the efficiency of oxidation processes in the treatme...
The aim of this study was to develop a portable optical instrument to measure the scavenging capacit...
A ranking system for monitoring-based process control was developed to select indicator compounds th...
A method for evaluating hydroxyl radical (・OH) scavenging activities using sequential injection anal...
The UV photolysis of persulfate (S2O8 2−) is a novel advanced oxidation technologies (AOTs), which l...
Hydrogen peroxide (H2O2) is frequently used in combination with ultraviolet (UV) light to treat trac...
Water quality monitoring is an essential component of water quality management for water utilities f...
AbstractAt present, the monitoring for chemical oxygen demand (COD) is mostly based on the chemical ...
The determination of OH radical scavenger capacity (ORSC) was performed using a new electrochemical ...
The wastewater produced by industrial processes contains many dissolved hazardous chemicals. The rem...