Synthesis of Composite Material Derived from Soybean Curd and Sludge Containing Fe for Removal of Paracetamol by Heterogeneous Fenton Oxidation
Corressponding author's email:
datnd@hcmute.edu.vnDOI:
https://doi.org/10.54644/jte.73.2022.1298Keywords:
Soybean residual, Sludge of water treatment, Fenton process, Paracetamol, OxidationAbstract
In this study, a composite material (ACS) was successfully synthesized from activated carbon (AC) derived from soybean curd and sludge from the supply water treatment process using FeCl3. Subsequently, the ACS was employed as a heterogeneous catalyst for the degradation of Paracetamol (PRC) in solutions under conditions of the Fenton process. The conditions for synthesizing composite material were evaluated under different temperatures (200 to 900oC) and AC/sludge ratios. Effects of pyrolysis temperature and of reaction parameters (pH, contacting time) were evaluated under batch conditions based on the degradation efficiency of PRC and TOC. PRC and TOC were analyzed using HPLC and TOC instrument. Results showed that the composite material synthesized at 600oC with AC/sludge = 1/1 (w/w) was of the best performance on the removal of PRC (95% after 30 min). At pH 2 and 3, the PRC removal efficiency was 89% and 18% after 15 minutes and 95% and 54% after 30 minutes, respectively, which were significantly higher than those obtained at higher pH values. After 24 hours, the PRC removal efficiency was 99% and the TOC removal efficiency reached 95%. The results indicated that high efficiency was obtained by synthesized material and most of PRC was converted to simple and non-toxic compounds such as CO2 and H2O.
Downloads: 0
References
E. D. Kantor, C. D. Rehm, J. S. Haas, A. T. Chan and E. L. Giovannucci, "Trends in prescription drug use among adults in the United States from 1999-2012," JAMA, pp. 1818–1831, 2015.
S. A. O. d. García, G. P. Pinto, P. A. García-Encina and R. IrustaMata, "Ecotoxicity and environmental risk assessment of pharmaceuticals and personal care products in aquatic environments and wastewater treatment plants," Ecotoxicology, vol. 23, pp. 1517-1533, 2014.
S. A. Kools, J. F. Moltmann and T. Knacker, "Estimating the use of veterinary medicines in the European union," Regulatory Toxicology and Pharmacology, vol. 50, pp. 59-65, 2008.
H. T. Nguyen, P. K. Thai, S. L. Kaserzon, J. W. O'Brien, G. Eaglesham and J. F. Mueller, "Assessment of drugs and personal care products biomarkers in the influent and effluent of two wastewater treatment plants in Ho Chi Minh City, Vietnam," Science of the Total Environment, pp. 469-475, 2018.
J. Akhtar, N. A. S. Amin and K. Shahza, "A review on removal of pharmaceuticals from water by adsorption," Desalination and Water Treatment, pp. 12842-12860, 2015.
A. C. Sophia, E. C. Lima, N. Allaudeen and S. Rajan, "Application of graphene based materials for adsorption of pharmaceutical traces from water and wastewater- a review," Desalination and Water Treatment, pp. 27573-27586, 2016.
M. T. Sekulic, N. Boskovic, A. Slavkovic, J. Garunovic, S. Kolakovic and S. Pap, "Surface functionalised adsorbent for emerging pharmaceutical removal: Adsorption performance and mechanisms," Protection, pp. 50-63, 2019.
B. Tiwari, B. Sellamuthu, Y. Ouarda, P. Drogui, R. D. Tyagi and G. Buelna, "Review on fate and mechanism of removal of pharmaceutical pollutants from wastewater using biological approach," Bioresource Technology, pp. 1-12, 2017.
Z. R. Hopkins and L. Blaney, "A novel approach to modeling the reaction kinetics of tetracycline antibiotics with aqueous ozone," Science of The Total Environment, Vols. 468-469, pp. 337-344, 2014.
Y.-Y. Chen, Y.-L. Ma, J. Yang, L.-Q. Wang, J.-M. Lv and C.-J. Ren, "Aqueous tetracycline degradation by H2O2 alone: Removal and transformation pathway," Chemical Engineering Journal, vol. 307, pp. 15- 23, 2017
R. Andreozzi, V. Caprio, R. Marotta and D. Vogna, "Paracetamol oxidation from aqueous solutions by means of ozonation and H2O2/UV system," Water Research, vol. 37, no. 5, pp. 993-104, 2003.
A. Mirzaei, Z. Chen, F. Haghighat and L. Yerushalmi, "Removal of pharmaceuticals from water by homo/heterogonous Fenton-type processes – A review," Chemosphere, pp. 665-688, 2017.
G. Sönmez, T. Bahadır and M. Işık, "Removal of selected pharmaceuticals from tap water by the Fenton process," International Journal of Environmental Analytical Chemistry, 2020.
H. Lu, Z. Zhu, H. Zhang, J. Zhu, Y. Qiu, L. Zhu and S. Küppers, "Fenton-Like Catalysis and Oxidation/Adsorption Performances of Acetaminophen and Arsenic Pollutants in Water on a Multimetal Cu–Zn– Fe-LDH," Applied Materials & Interfaces, pp. 25343-25352, 2016.
M. Carrasco-Díaz, E. Castillejos-López, A. Cerpa-Naranjo and M. Rojas-Cervantes, "On the textural and crystalline properties of Fe-carbon xerogels. Application as Fenton-like catalysts in the oxidation of paracetamol by H2O2," Microporous and Mesoporous Materials, vol. 237, pp. 282-293, 2017.
Y. Shi, Y. Zhang, Y. Cui, J. Shi, X. Meng, J. Zhang and H. He, "Magnetite nanoparticles modified β-cyclodextrin PolymerCoupled with KMnO4 oxidation for adsorption and degradation of acetaminophen," Carbohydrate Polymers, vol. 225, 2019.
C. Gómez-Pacheco, M.Sánchez-Polo, J. Rivera-Utrilla and J. LópezPeñalver, "Tetracycline removal from waters by integrated technologies based on ozonation and biodegradation," Chemical Engineering Journal, vol. 178, pp. 115-121, 2011.
A. K. Fikriyyah, E. R. Chaldun and A. Hardiansyah, "Utilization of soybean curd residue for carbon-based adsorbent material and its characterization," IOP Conference Series: Earth and Environmental Science, no. 160, 2018.
S. Lee, T. Lee and D. Kim, "Adsorption of hydrogen sulfide from gas streams using amorphous composite of α-FeOOH and activated carbon powder," Industrial & Engineering Chemistry Research, vol. 56, pp. 3116- 3122, 2017.
T. T. N. Pham, T. N. T. Le, D. D. Nguyen, M. L. Nguyen, T. D. Nguyen, H.-P. Chao, H. N. Tran, “Two-stage preparation of highly mesoporous carbon for super-adsorption of paracetamol and tetracycline in water: Important contribution of pore filling and π-π interaction,” Environmental Research, 0013-9351, 2022
A. Zabaniotou, G. Stavropoulos and V. Skoulou, "Activated carbon from olive kernels in a two-stage process: Industrial improvement," Bioresource Technology, vol. 99, pp. 320-326, 2008.
S.-H. Yoon, S. Lim, Y. Song, Y. Ota, W. Qiao and A. T. I. Mochida, "KOH activation of carbon nanofibers," Carbon, vol. 42, pp. 1723-1729, 2004.
G. Stavropoulos and A. Zabaniotou, "Production and characterization of activated carbons from the olive-seed waste residue," Microporous and Mesoporous Materials, vol. 82, pp. 79-85, 2005.
S. Li, K. Han, J. Li, M. Li and C. Lu, "Preparation and characterization of super activated carbon produced from gulfweed by KOH activation," Microporous and Mesoporous Materials, vol. 243, pp. 291-300, 2017.
D. Lozano-Castello, M. Lillo-Rodenas, D. Cazorla-Amoros and A. Linares-Solano, "Preparation of activated carbons from Spanish anthracite I. Activation by KOH," Carbon, vol. 39, pp. 741-749, 2001.
I.A. Alaton, I.A. Balcioglu, and D.W. Bahnemann, “Advanced oxidation of a reactive dybath effluent: comparison of O3 H2O2/UV-C and TiO2/UV-A processes,” Water Res. , vol.36, pp.1143–1154, 2002.
Y. Yang, P. Wang, S. Shi, and Y. Liu, “Microwave enhanced Fentonlike process for the treatment of high concentration pharmaceutical wastewater,” Journal of Hazardous Materials, vol.168, no.1, pp.238–245, 2009.
G.V. Buxton, C.L. Greenstock, W.P. Helman, and A.B. Ross, “Critical review of rate constants for reaction of hydrated electrons, hydrogen atoms and hydroxyl radicals (•OH/•O−) in aqueous solutions,” J. Phys. Chem. Ref., Data 17, pp. 513–886, 1998.
Downloads
Published
How to Cite
Issue
Section
Categories
License
Copyright (c) 2022 Journal of Technical Education Science

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.
Copyright © JTE.


