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Photocatalytic Degradation of Methylene Blue Using TiO2-Natural Zeolite as A Photocatalyst
Author(s) -
Sri Wardhani,
Moh. Farid Rahman,
Danar Purwonugroho,
Rachmat Triandi Tjahjanto,
Christiana Adi Damayanti,
Ika Oktavia Wulandari
Publication year - 2016
Publication title -
the journal of pure and applied chemistry research
Language(s) - English
Resource type - Journals
eISSN - 2541-0733
pISSN - 2302-4690
DOI - 10.21776/ub.jpacr.2016.005.01.232
Subject(s) - zeolite , photocatalysis , chemistry , methylene blue , degradation (telecommunications) , anatase , aqueous solution , nuclear chemistry , irradiation , chemical oxygen demand , chemical engineering , catalysis , organic chemistry , environmental engineering , wastewater , telecommunications , physics , computer science , nuclear physics , engineering
TiO 2 - zeolite photocatalyst has been prepared by impregnation of TiO 2 onto acid -activated natural zeolite. The XRD data confirmed that natural zeolite used in this work is predominated with mordenite and clinoplitolite types, whereas anatase type can be attributed to TiO 2 . The highest performance of TiO 2 – zeolite, which is indicated by surface area of 13.304 m 2 /g and band gap energy of 3.15 eV, is obtained when 10 mmol of TiO 2 is impregnated onto the zeolite. The ability of this photocatalyst is evaluated by examining degradation of methylene blue (MB) in the presence of UV source. The effects of MB concentration, pH and UV irradiation time on the degradation are studied in a batch reactor. It is interesting since the addition of H 2 O 2 can improve the degradation effeciency of MB. The optimum result is achieved at pH 11, duration of UV irradiation of 50 min, showing degradation amount of 98.25 %. Surprisingly, the chemical oxygen demand (COD) in the degraded MB aqueous solution can be reduced about 77.9%, exhibiting the improvement of water quality. No loss of the activity of the degradation efficiency after reusability of this TiO 2 - zeolite photocatalyst for at least 4 times.

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