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            Chapter 9 Toxicity of the Catalyst and Products Formed in the Process

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            Author(s)
            Bury, Dominika
            Jakubczak, Michał
            Bogacki, Jan
            Marcinowski, Piotr
            Jastrzębska, Agnieszka
            Language
            English
            Show full item record
            Abstract
            Chapter 9 - The heterogeneous Fenton process can generate a large number of compounds that can be toxic to the environment, and more toxic by-products than the parent compounds can appear after the treatment process. The heterogeneous Fenton process is used to decompose contaminants by rapid oxidation in the presence of a catalyst. Iron oxides, commonly used as catalysts, are considered to be non-toxic, but there are reports of toxicity towards certain organisms. Therefore, studies on the stability of the catalysts used in the process and their potential threats to living organisms are necessary. It is essential to constantly work on the stability of the catalyst. The toxicity of the by-products is also crucial. According to the reports, the decrease in viability of organisms is organism-specific and dose-dependent, and the lethal effect is strictly related to the size of particles. Incomplete mineralization can also result in hazardous, potentially toxic compounds in the effluent. Thus, the toxicity of effluent also needs to be studied, and biodegradability needs to be increased to reduce the toxicity of the process.
            Book
            Wastewater Treatment with the Fenton Process
            URI
            https://doab-dev.siscern.org/handle/20.500.12854/187475
            Keywords
            Advanced Oxidation Process ; Industrial Wastewater ; Iron Catalysts ; Nanotechnology, Nano-Oxides ; Refractory Organic Compounds ; Wastewater Quality Assessment; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TQ Environmental science, engineering and technology::TQS Sanitary and municipal engineering::TQSW Water supply and treatment; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TQ Environmental science, engineering and technology
            DOI
            10.1201/9781003364085-9
            ISBN
            9781032359014, 9781032427423
            Publisher
            Taylor & Francis
            Publisher website
            http://www.taylorandfrancis.com/
            Publication date and place
            2024
            Imprint
            CRC Press
            Pages
            9
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              This project received funding from the European Union’s Horizon 2020 research and innovation programme under grant agreement No 871069.

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