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Titlebook: Dye Biodegradation, Mechanisms and Techniques; Recent Advances Subramanian Senthilkannan Muthu,Ali Khadir Book 2022 The Editor(s) (if appli

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Wissensbereitstellung mithilfe der KAI| Boxenvironment at present due to their recalcitrant, toxic, carcinogenic and mutagenic behavior. Dye pollution affects aquatic life by impairing the sunlight permeability and can damage the aquatic ecosystem terribly. Therefore, treatment of dye-containing wastewater is required. Bioremediation seems a
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Computergestützte Kompetenzmanagementsystemele, leather, foods are using the recalcitrant compounds in manufacturing process which is hard to degrade. All such industries discharged the unprocessed waste in water bodies or nature and become serious environmental problem for ecological niche. These dyes cannot be degraded naturally by chemical
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Iris Przygodda,Torben Hügens,Malte L. Petersfore, various technologies have been developed to face this problem. Compared with traditional methods, the fungal mechanism has significant advantages. Fungal selection is based on the pollutants present in the medium and all the treatments used before fungal applications. Fungal biosorption and en
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Iris Przygodda,Torben Hügens,Malte L. Petershealth and the environment. Thus, it must be handled properly before discharging into the environment. This chapter discusses the performance evaluation of the sequential batch reactor (SBR) system in managing dyes. It further complied and analyzed the impact of several environmental and operational
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https://doi.org/10.1007/978-981-16-5932-4Degradation of Dyes; Filamentous Fungi; Bioremediation of Dye; Mesophilic Bacteria; Batch Reactor System
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978-981-16-5934-8The Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Nature Singapor
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