Critical review on electrooxidation and chemical reduction of azo dyes: Economic approach

被引:4
作者
Kamenická B. [1 ]
Kuchtová G. [1 ]
机构
[1] Institute of Environmental and Chemical Engineering, University of Pardubice, Studentská 573, Pardubice
关键词
Azo dye; Chemical reduction; Cost estimation; Economy; Electrochemical oxidation;
D O I
10.1016/j.chemosphere.2024.142799
中图分类号
学科分类号
摘要
Effective degradation technologies have been extensively investigated and used to remove azo dyes from wastewater for decades. However, no review dealing with both electrooxidation and chemical reduction of azo dyes from an economic and, therefore, application-relevant perspective has been found in the current literature. A novelty of this review article consists not only in the brief summarization and comparison of both methods but mainly in the evaluation of their economic side. Based on the literature survey of the last 15 years, the costs of treatment approaches published in individual research articles have been summarized, and the missing data have been calculated. A broad spectrum of advanced electrode materials and catalysts have been developed and tested for the treatment, specifically aiming to enhance the degradation performance. An outline of the global prices of electrode materials, reducing agents, and basic chemicals is involved. All additional costs are described in depth in this review. The advantages and disadvantages of respective methods are discussed. It was revealed that effective and cheap treatment approaches can be found even in advanced degradation methods. Based on the collected data, electrooxidation methods offer, on average, 30 times cheaper treatment of aqueous solutions. Concerning chemical reduction, only ZVI provided high removal of azo dyes at prices <100 $ per kg of azo dye. The factors affecting total prices should also be considered. Therefore, the basic diagram of the decision-making process is proposed. In the conclusion, challenges, future perspectives, and critical findings are described. © 2024 Elsevier Ltd
引用
收藏
相关论文
共 155 条
[1]  
AboliGhasemabadi M., Mbarek W.B., Casabella O., Roca-Bisbe H., Pineda E., Escoda L., Sunol J.J., Application of mechanically alloyed MnAl particles to de-colorization of azo dyes, J. Alloys Compd., 741, pp. 240-245, (2018)
[2]  
AboliGhasemabadi M., Ben Mbarek W., Cerrillo-Gil A., Roca-Bisbe H., Casabella O., Blanquez P., Pineda E., Escoda L., Sunol J.J., Azo-dye degradation by Mn–Al powders, J. Environ. Manag., 258, (2020)
[3]  
Ahmed I.A., Nosier S.A., Malash G.F., Hussein M., Abdel-Aziz M.H., Sedahmed G.H., Fathalla A.S., Removal of brilliant Yellow azo dye from wastewater by electrocoagulation in a cell of improved design, Water Air Soil Pollut., 234, (2023)
[4]  
Al-Amrani W.A., Hanafiah M.A.K.M., Mohammed A.H.A., A comprehensive review of anionic azo dyes adsorption on surface-functionalised silicas, Environ. Sci. Pollut. Res., 29, pp. 76565-76610, (2022)
[5]  
Alagesan J., Jaisankar M.S., Muthuramalingam S., Mousset E., Chellam P.V., Influence of number of azo bonds and mass transport limitations towards the elimination capacity of continuous electrochemical process for the removal of textile industrial dyes, Chemosphere, 262, (2021)
[6]  
Alcocer S., Picos A., Uribe A.R., Perez T., Peralta-Hernandez J.M., Comparative study for degradation of industrial dyes by electrochemical advanced oxidation processes with BDD anode in a laboratory stirred tank reactor, Chemosphere, 205, pp. 682-689, (2018)
[7]  
Atacan K., Guy N., Ozacar M., Design and synthesis of magnetically separable CuFe2O4/MoS2 p-n heterojunction for photocatalytic efficiency of Rhodamine B degradation, Colloids Interface Sci Commun, 40, (2021)
[8]  
Bafana A., Devi S.S., Chakrabarti T., Azo dyes: past, present and the future, Environ. Rev., 19, pp. 350-371, (2011)
[9]  
Balakrishnan V.K., Shirin S., Aman A.M., de Solla S.R., Mathieu-Denoncourt J., Langlois V.S., Genotoxic and carcinogenic products arising from reductive transformations of the azo dye, Disperse Yellow 7, Chemosphere, 146, pp. 206-215, (2016)
[10]  
Barreto-Rodrigues M., Silveira J., Zazo J.A., Rodriguez J.J., Synthesis, characterization and application of nanoscale zero-valent iron in the degradation of the azo dye Disperse Red 1, J. Environ. Chem. Eng., 5, pp. 628-634, (2017)