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Original Articles

Microwave-enhanced Fenton-like system, Cu(II)/H2O2, for olive mill wastewater treatment

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Pages 853-860 | Received 17 May 2012, Accepted 30 Jul 2012, Published online: 28 Sep 2012

Keep up to date with the latest research on this topic with citation updates for this article.

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Qingfeng Cai, Xiao Zhang, Wenguang Geng, Fang Liu, Dongling Yuan & Rongfeng Sun. (2023) Experimental study of microwave-catalytic oxidative degradation of COD in livestock farming effluent by copper-loaded activated carbon. Environmental Technology 0:0, pages 1-11.
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Özlem Karahan Özgün, İlke Pala Özkök, Can Kutay & Derin Orhon. (2016) Characteristics and biodegradability of olive mill wastewaters. Environmental Technology 37:10, pages 1240-1248.
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Hamida Iboukhoulef, Abdeltif Amrane & Hocine Kadi. (2016) Removal of phenolic compounds from olive mill wastewater by a Fenton-like system H2O2/Cu(II)—thermodynamic and kinetic modeling. Desalination and Water Treatment 57:4, pages 1874-1879.
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A. Siciliano, M.A. Stillitano & S. De Rosa. (2015) Increase of the anaerobic biodegradability of olive mill wastewaters through a pre-treatment with hydrogen peroxide in alkaline conditions. Desalination and Water Treatment 55:7, pages 1735-1746.
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Meryem Salhi & Kamel Rida. (2023) A new tribasic copper chloride adsorbent's synthesis, characterization and analysis of its regeneration using a Fenton-like procedure. Materials Science and Engineering: B 292, pages 116439.
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Yong Liu & Jianlong Wang. (2023) Multivalent metal catalysts in Fenton/Fenton-like oxidation system: A critical review. Chemical Engineering Journal 466, pages 143147.
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Jia Ru Dai, Kai Xuan Liu, Fang Lian, Xue Peng Tian & Yu Feng Zhang. (2023) The preparation of Co/γ-Al2O3 and treatment of cartap pesticide wastewater by microwave catalytic oxidation. Journal of Water Process Engineering 51, pages 103326.
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João Peres Ribeiro, Helena G.M.F. Gomes, Luana Sarinho, Catarina C. Marques & Maria Isabel Nunes. (2022) Synergies of metallic catalysts in the Fenton and photo-Fenton processes applied to the treatment of pulp bleaching wastewater. Chemical Engineering and Processing - Process Intensification 181, pages 109159.
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Qingshan Liu, Jian He, Wang Yang, Qianqian Wu, Ling Zou, Yonghui Wu, Lu Yang, Guangyou Shi & Xiaochao Yang. (2022) Mesoporous ceria nanoparticles for ultra-fast and highly flexible photo-Fenton catalytic reaction. Journal of Photochemistry and Photobiology A: Chemistry, pages 114309.
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Lihong Wang, Jin Jiang, Jun Ma, Suyan Pang & Tao Zhang. (2022) A review on advanced oxidation processes homogeneously initiated by copper(II). Chemical Engineering Journal 427, pages 131721.
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Qi Hu, Yanan He, Fang Wang, Jing Wu, Zhimin Ci, Lumeng Chen, Runchun Xu, Ming Yang, Junzhi Lin, Li Han & Dingkun Zhang. (2021) Microwave technology: a novel approach to the transformation of natural metabolites. Chinese Medicine 16:1.
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Quynh Thi Phuong Tran, Yi-Hsueh Chuang, Steve Tan, Chi-Hsu Hsieh, Tung-Yu Yang & Hsin-hsin Tung. (2021) Degradation Kinetics and Pathways of Isopropyl Alcohol by Microwave-Assisted Oxidation Process. Industrial & Engineering Chemistry Research 60:34, pages 12461-12473.
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M. M. M’Arimi, A. K. Kiprop, R. C. Ramkat & H. K. Kiriamiti. (2020) Progress in applications of advanced oxidation processes for promotion of biohydrogen production by fermentation processes. Biomass Conversion and Biorefinery.
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Yin Wang, Lan Yu, Ruotong Wang, Yun Wang & Xiaodong Zhang. (2020) Reactivity of carbon spheres templated Ce/LaCo0.5Cu0.5O3 in the microwave induced H2O2 catalytic degradation of salicylic acid: Characterization, kinetic and mechanism studies. Journal of Colloid and Interface Science 574, pages 74-86.
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Zailiang LiuHailing Meng, Chao LiHui ZhangJiashun CaoGuanhua Meng. (2020) Degradation of Biologically Treated Coking Wastewater over CuOx/PAC, CuOx/GAC, and CuOx/ACF Catalysts under Microwave Irradiation in the Presence of H2O2. Journal of Environmental Engineering 146:4.
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Rui Wei, Peng Wang, Guangshan Zhang, Nannan Wang & Tong Zheng. (2020) Microwave-responsive catalysts for wastewater treatment: A review. Chemical Engineering Journal 382, pages 122781.
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M. A. Tony & Sh. A. Mansour. (2019) Microwave-assisted catalytic oxidation of methomyl pesticide by Cu/Cu2O/CuO hybrid nanoparticles as a Fenton-like source. International Journal of Environmental Science and Technology 17:1, pages 161-174.
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Nevim Genç, Elif Durna & Hatice Kübra Kayapinar Cicigün. (2019) Response Surface Modeling and Optimization of Microwave‐Activated Persulfate Oxidation of Olive Oil Mill Wastewater. CLEAN – Soil, Air, Water 48:1, pages 1900198.
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Reda Elkacmi & Mounir Bennajah. (2019) Advanced oxidation technologies for the treatment and detoxification of olive mill wastewater: a general review. Journal of Water Reuse and Desalination 9:4, pages 463-505.
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Hamida Iboukhoulef, Rachida Douani, Abdeltif Amrane, Ahcene Chaouchi & Abdelhamid Elias. (2019) Heterogeneous Fenton like degradation of olive Mill wastewater using ozone in the presence of BiFeO3 photocatalyst. Journal of Photochemistry and Photobiology A: Chemistry 383, pages 112012.
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Nilgun Ayman Oz & Alev Cagla Uzun Eker. (2019) Simultaneous hydrogen production and pollutant removal from olive mill wastewaters using electrohydrolysis process. Chemosphere 232, pages 296-303.
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Quynh Thi Phuong Tran, Chi-Hsu Hsieh, Tung-Yu Yang & Hsin-hsin Tung. (2019) Optimization of isopropyl alcohol degradation by microwave-induced catalytic oxidation process. Journal of Water Reuse and Desalination 9:3, pages 213-224.
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Behnam Heidari, Mohsen Soleimani & Nourollah Mirghaffari. (2018) The use of steel slags in the heterogeneous Fenton process for decreasing the chemical oxygen demand of oil refinery wastewater. Water Science and Technology 78:5, pages 1159-1167.
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Peter Priecel, Javier Eduardo Perez Mejia, Piera Demma Carà & Jose A. Lopez-Sanchez. 2018. Sustainable Catalysis for Biorefineries. Sustainable Catalysis for Biorefineries 243 299 .
Zailiang Liu, Hailing Meng, Hui Zhang, Jiashun Cao, Ke Zhou & Jianjun Lian. (2018) Highly efficient degradation of phenol wastewater by microwave induced H2O2-CuOx/GAC catalytic oxidation process. Separation and Purification Technology 193, pages 49-57.
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Wenhua Yuan, Chaoying Zhang, Hong Wei, Qinqin Wang & Kebin Li. (2017) In situ synthesis and immobilization of a Cu( ii )–pyridyl complex on silica microspheres as a novel Fenton-like catalyst for RhB degradation at near-neutral pH . RSC Advances 7:37, pages 22825-22835.
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Bo Zhang, Hong You & Fei Wang. (2017) Microwave-enhanced catalytic wet peroxide oxidation of quinoline: the influence of pH and H 2 O 2 dosage and identification of reactive oxygen species . RSC Advances 7:24, pages 14769-14775.
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Alessio Siciliano, Maria Stillitano & Carlo Limonti. (2016) Energetic Valorization of Wet Olive Mill Wastes through a Suitable Integrated Treatment: H2O2 with Lime and Anaerobic Digestion. Sustainability 8:11, pages 1150.
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Nannan Wang, Tong Zheng, Guangshan Zhang & Peng Wang. (2016) A review on Fenton-like processes for organic wastewater treatment. Journal of Environmental Chemical Engineering 4:1, pages 762-787.
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Bo Zhang, Hong You, Zhongzhe Yang & Fei Wang. (2016) A highly active bimetallic oxide catalyst supported on γ-Al 2 O 3 /TiO 2 for catalytic wet peroxide oxidation of quinoline solutions under microwave irradiation . RSC Advances 6:70, pages 66027-66036.
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A. Siciliano, M.A. Stillitano & S. De Rosa. (2016) Biogas production from wet olive mill wastes pretreated with hydrogen peroxide in alkaline conditions. Renewable Energy 85, pages 903-916.
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Nannan Wang & Peng Wang. (2016) Study and application status of microwave in organic wastewater treatment – A review. Chemical Engineering Journal 283, pages 193-214.
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Nannan Wang, Tong Zheng, Jiping Jiang & Peng Wang. (2015) Cu(II)–Fe(II)–H2O2 oxidative removal of 3-nitroaniline in water under microwave irradiation. Chemical Engineering Journal 260, pages 386-392.
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Juan Chen. (2014) Immobilisation of Iron-Containing Materials onto Supporting Materials in Heterogeneous Fenton System: A Review. Advanced Materials Research 955-959, pages 569-580.
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Alok D. Bokare & Wonyong Choi. (2014) Review of iron-free Fenton-like systems for activating H2O2 in advanced oxidation processes. Journal of Hazardous Materials 275, pages 121-135.
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