UTILIZATION OF PINEAPPLE LEATHER WASTE (ANANAS COMOCUS) AS AN OKSALATE ACID SOURCE TO IMPROVE THE EFFECTIVENESS OF Cu (II) IONALIZED ION PHOTOREDUCTION OF TiO2

Husnul Hatimah, Suryati Suryati

Abstract


A study has been carried out on the effect of the addition of TiO2 photocatalysts and oxalic acid sourced from pineapple skin at various pH and concentrations, to the effectiveness of Cu (II) ion photoreduction catalyzed by TiO2. The photoreduction process was carried out by irradiating the mixture consisting of a solution of Cu (II) ion and TiO2 photocatalyst powder without or in the presence of oxalic acid in a closed reactor equipped with a UV lamp with stirring. The photoreduction process conditions are 50 mL of 10 ppm Cu (II) ion solution (0.157 mmol / L) and varying concentrations of oxalic acid, and 20 mg of TiO2, with a 24-hour reaction time. The photoreduction product was determined based on the difference in the initial Cu (II) ion concentration and the remaining Cu (II) ion concentration in the solution after the photoreduction process was determined by the Atomic Absorption Spectrophotometry (AAS) method. The results showed that the addition of TiO2 could increase the effectiveness of Cu (II) ion photoreduction from 9.03% to 43.22%, which was initiated by the adsorption process. The presence of oxalic acid in pineapple skin in a photoreduction reaction system with greater concentration causes a relatively high increase in Cu (II) ion photoreduction because oxalic acid can prevent recombination of electrons with OH radicals, so that the Cu (II) photoreduction process can run optimally due to the amount of relatively large number of available electrons.


Keywords


Cu photoreduction, oxalic acid, TiO2

Full Text:

PDF

References


Alberty, R.A. an F. Daniels, 1987, Physical Chemistry, 5th ed., S1 version, John wiley and Sons, Inc., new York.

Burrows, H.D., Ernestova, L.S., Kemp, T.J., Skurlatov, Y.I., Purmal, A.P., dan Yermakov, A.N., 1998, Kinetics and Mechanism of Photodegradation of Chlorophenols, Sci. Technol. Lett., 23, 145-207.

Cotton, F.A. dan Wilkinson, G., 1989, Kimia Anorganik, 6th ed., John Wiley & Sons, New York.

Gunlazuardi, J., 2001, Fotokatalisis pada Permukaan TiO2, Aspek Fundamental dan Aplikasinya, Prosiding Seminar Nasional Kimia Fisika II, Jakarta.

Hoffmann, M.R., Martin, S.T., Choi, W., dan Bahnemann, D.W., 1995, Environmental Applications of Semiconductor Photocatalysis, Chem. Rev., 95, 69-96.

Manahan, S.E., 2000, Environmental Chemistry, Seventh edition, Lewis Publishers, London.

Masel, R.I., 1996, Principles Adsorption and Reaction on Solid Surface, John Wiley & Sons, Inc, Canada.

Merck, 2000. The Merck Index on CD-Room Version 12 : 3, Merck & Co, Inc, USE.

Palar, H, 1994, Pencemaran dan Toksikologi Logam Berat, Cetakan pertama, Rineka Cipta, Jakarta.

Snoeyink, V.L. dan Jenkins, D., 1980, Water Chemistry, John Wiley and Sons, New York

Wahyuni, E.T., Hadipranoto N., Tahir, I., dan Tamtama, B.H.G., 2004, Effect of Ions on the Effectiveness of Chlorophenol Photodegradation, Indonesian Journal of Chemistry, 49(3), 156-160.




DOI: https://doi.org/10.33394/j-ps.v1i2.1014

Refbacks

  • There are currently no refbacks.




Copyright (c) 2013 Husnul Hatimah, Suryati Suryati

Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 International License.

Creative Commons License
J-PS (Prisma Sains: Jurnal Pengkajian Ilmu dan Pembelajaran Matematika dan IPA IKIP Mataram) p-ISSN (print) 2338-4530, e-ISSN (online) 2540-7899 is licensed under a Creative Commons Attribution 4.0 International License.

View My Stats