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Advancements in Bio-systems and Technologies for Wastewater Treatment / / edited by Soumya Pandit, Lakhan Kumar, Abhilasha Singh Mathuriya, Dipak Ashok Jadhav, Subhasree Ray



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Autore: Pandit Soumya Visualizza persona
Titolo: Advancements in Bio-systems and Technologies for Wastewater Treatment / / edited by Soumya Pandit, Lakhan Kumar, Abhilasha Singh Mathuriya, Dipak Ashok Jadhav, Subhasree Ray Visualizza cluster
Pubblicazione: Cham : , : Springer International Publishing : , : Imprint : Springer, , 2024
Edizione: 1st ed. 2024.
Descrizione fisica: 1 online resource (334 pages)
Disciplina: 551.48
Soggetto topico: Water
Hydrology
Refuse and refuse disposal
Environmental management
Biotechnology
Biology
Waste Management/Waste Technology
Environmental Management
Biological Sciences
Altri autori: KumarLakhan  
MathuriyaAbhilasha Singh  
JadhavDipak Ashok  
RaySubhasree  
Nota di contenuto: Microbial electrochemical systems -- Membrane Bioreactor -- Electro-Fenton Assisted Bioprocesses -- Bio-Desalination techniques -- Anaerobic biodigesters -- Thermophilic digesters -- Constructed wetland and submerged aquatic plants -- Activated Sludge Process -- Upflow anaerobic sludge blanket -- Biological Aerated filters -- Fluidized bed reactor -- Trickling Bed Bioreactors -- Algal bioreactors for autotrophic and mixotrophic biomass production -- Hydrogen producing bioreactor -- Anaerobic Sequencing Batch Reactors for Biohydrogen production.-Sequential batch bioreactors -- Advanced oxidation bioprocesses -- Hybrid bioreactors -- Anammox -- Life Cycle assesment of Bioreactors -- Advanced technologies in wastewater treatment and resource recovery (Chanchal Majumder).
Sommario/riassunto: This book explains the main problems of industrial wastewater treatments and how they are being treated by innovative biological processes. The need for clean water in developing countries has become difficult to achieve as a result of globalization and industrialization and because of an increase in population, urbanization, and per capita water use. Residential, commercial, industrial, and educational institutions produce immense amounts of wastewater. Wastewater is treated to extract toxins to produce processed effluent by physical, chemical, and biological processes. Most of these innovative treatment systems are membrane filtration, advanced oxidation processes, and electrochemical approaches, which are strongly committed to offering solutions to help protect public health and the environment. For wastewater treatment, different forms of bioreactors are used which are reliable, cost-efficient, and effective in removing a wide variety of contaminants. This book outlines the capacity of various bioreactors that are most widely used for the treatment of different industrial and domestic wastewater, such as a rotating biological contactor, biological fluidized bed reactor, packed bed reactor, membrane bioreactor, continuous stirred tank bioreactor, up-flow anaerobic sludge blanket reactor, and photobioreactor, etc. Despite this, the acceptance of these technologies and their commercialization on an industrial scale, the performance is still limited. Therefore, a broader use of cost-effective in situ remedial approaches to natural phenomena like bioremediation is needed. The role of numerous bioreactors in industrial effluent treatment has, including recent developments, also been explored in depth. Furthermore, it includes the operational factors affecting their performances, advances in their architectural design, their amalgamation with the existing setup, scale-up studies, life cycle assessment of those reactors, materials and cost analysis, etc. This information helps the reader to understand the insight into the mechanism, pros and cons, moreover efficient utilization, and commissioning of bioreactors. .
Titolo autorizzato: Advancements in Bio-Systems and Technologies for Wastewater Treatment  Visualizza cluster
ISBN: 3-031-58331-0
Formato: Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione: Inglese
Record Nr.: 9910878053403321
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Serie: Water Science and Technology Library, . 1872-4663 ; ; 118