Photo-Catalytic-Assisted Method for Treating Industrial …
159
Fig. 4 UV
spectrophotometer
UV Spectrophotometer
The UV spectrophotometer was used to analyze the UV spectrum of the samples
(Fig. 4).
3.2.4 Methodology
Preparation of Test Solution
For each experiment conducted, a bulk solution was prepared and the experiment
was conducted for solution of 1000 ml with 1 g of catalyst in it.
Testing of Effluent Characteristics
The sourced effluent is tested for its characteristics namely COD, BOD, TSS and
TDS (Table 1).
3.2.5 Photo-Catalytic Treatment
The photo-catalytic treatment was conducted using Titanium-Di-oxide and RGO
P 25 catalyst. Various parameters like pH, light source and concentration of catalyst
were analyzed. All the experiments were conducted for 100 ml solution with 0.1 g
of catalyst in it. In Fig. 5, the UV photo reactor model is shown. In this method,
159
Fig. 4 UV
spectrophotometer
UV Spectrophotometer
The UV spectrophotometer was used to analyze the UV spectrum of the samples
(Fig. 4).
3.2.4 Methodology
Preparation of Test Solution
For each experiment conducted, a bulk solution was prepared and the experiment
was conducted for solution of 1000 ml with 1 g of catalyst in it.
Testing of Effluent Characteristics
The sourced effluent is tested for its characteristics namely COD, BOD, TSS and
TDS (Table 1).
3.2.5 Photo-Catalytic Treatment
The photo-catalytic treatment was conducted using Titanium-Di-oxide and RGO
P 25 catalyst. Various parameters like pH, light source and concentration of catalyst
were analyzed. All the experiments were conducted for 100 ml solution with 0.1 g
of catalyst in it. In Fig. 5, the UV photo reactor model is shown. In this method,
