Kinerja Fotokatalis CU/TIO2 Nanotube (CU/Tnt) Terhadap Naphtol Blue Black Dye Dengan Pengaruh Variasi Massa Dopan CU2+
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Fakultas Matematika dan Ilmu Pengetahuan Alam
Abstract
Titanium dioxide (TiO₂) is a semiconductor material that has found widespread
use as a photocatalyst, a material that can be used to accelerate reactions involving
light. In particular, TiO₂ is used to degrade organic pollutants, which are chemicals
that have been used in large quantities and have become a significant
environmental concern. However, its photocatalytic activity is constrained by a
substantial bandgap and expeditious electron-hole recombination. The
modification of TiO₂ into a nanotube structure (TNT) and subsequent doping with
copper (Cu) has been demonstrated to enhance visible light absorption and
photocatalytic efficiency. Naphthol Blue Black (NBB) is an azo dye that is
frequently utilized in the textile and batik industries. It is regarded as an
environmental contaminant due to its persistence and resistance to natural
degradation. The objective of this study is to examine the impact of varying Cu
dopant mass fractions on the photocatalytic performance of Cu/TiO2 nanotubes
(Cu/TNT) in NBB degradation processes. Additionally, the study seeks to
ascertain the optimal pH, catalyst dosage, and catalyst reusability for maximized
efficiency. The Cu dopant mass utilized in this study ranged from 0% to 3%, with
increments of 0.1%. The precursors employed were TiO2 micropowder and
CuCl2·2H2O. Cu/TNT was synthesized using the hydrothermal method at 130°C
for 24 hours and applied for the photocatalytic degradation of a 25 ppm NBB
solution under visible light irradiation. Photocatalytic performance was evaluated
through a series of analytical tests, including adsorption tests, irradiation time
tests, pH variation tests, catalyst dosage tests, and reusability tests. These
evaluations were conducted using UV-Vis spectrophotometry, a method of optical
analysis that quantifies the absorption and emission of light by a sample. The
results demonstrated that an augmentation in the mass of the Cu dopant enhanced
both adsorption and photocatalytic activity. Cu/TNT 3% demonstrated the optimal
performance, exhibiting an adsorption value of Ct/C₀ of 0.4935 and a removal
efficiency of 50.91% after 60 minutes of irradiation. The optimal degradation
conditions were obtained at a pH of 3 and a catalyst dose of 5 g/L, yielding
removal efficiencies of 53.34% and 59.15%, respectively. Reusability tests
demonstrated that the 3% Cu/TNT catalyst exhibited excellent stability for up to
five cycles and attained a removal efficiency of 49.34% in the sixth cycle. These
findings suggest that Cu/TNT is a promising visible-light photocatalyst for the
treatment of wastewater containing dyes.
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Validasi dan Finalisasi Ratna 13 Juli 2026
