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  • Zero-Waste Technologies in Aquaculture: Global Perspectives and Methods toward a Circular Economy

    Zero-Waste Technologies in Aquaculture by Singh, Soibam Khogen; Meena, Dharmendra Kumar; Khanjani, Mohammad Hossein; Sharifinia, Moslem;

    Global Perspectives and Methods toward a Circular Economy

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      • Publisher's listprice EUR 185.99
      • The price is estimated because at the time of ordering we do not know what conversion rates will apply to HUF / product currency when the book arrives. In case HUF is weaker, the price increases slightly, in case HUF is stronger, the price goes lower slightly.

        72 647 Ft (69 188 Ft + 5% VAT)
      • Discount 10% (cc. 7 265 Ft off)
      • Discounted price 65 383 Ft (62 269 Ft + 5% VAT)

    72 647 Ft

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    Product details:

    • Publisher Elsevier Science
    • Date of Publication 1 October 2026

    • ISBN 9780443346897
    • Binding Paperback
    • No. of pages430 pages
    • Size 235x191 mm
    • Weight 450 g
    • Language English
    • 700

    Categories

    Long description:

    Zero-Waste Technologies in Aquaculture: Global Perspectives and Methods toward a Circular Economy addresses the crucial aspects of waste management, available strategies for attaining a circular economy, and novel technologies to improve the sustainability of the aquaculture industry. As global demand for fish and fish products grows, commercial aquaculture operations must optimize resource utilization and reduce environmental impacts to ensure sustainable scaleup. This book discusses promising technologies like biofloc, aquaponics, recirculating aquaculture systems, integrated multi-trophic aquaculture, microbial fermentation, insect-mediated bioconversion, and algal-based waste utilization. Written and edited by a diverse team of experts, Zero-Waste Technologies in Aquaculture bridges disciplines in aquaculture, biology, and environmental engineering. It opens by addressing the recent history, significance, and challenges of global aquaculture expansion to provide context for these diverse audiences. Subsequent chapters explore proven, novel, and emerging technologies for wastewater treatment, solid waste recovery and valorization, and sustainable, environmentally conscious system scaleup. This is an essential read for aquaculturists, aquatic biologists, environmental scientists, and those interested in the economics of fish production.

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    Table of Contents:

    1. Global aquaculture growth: Challenges and key reforms
    2. Aquaculture wastewater treatment technologies: Updates on recent system advancements
    3. Recirculation and recycling: Innovations in hybrid recirculatory aquaculture systems
    4. Trapping nutrients through constructed wetlands
    5. Aquaponic models as unique urban aquaculture setups
    6. Effluent-derived nutrient uptake through an algaquaculture concept
    7. Integrated technological developments in aquaculture systems
    8. Seeking global solutions through valorization of solid waste for insect meal production
    9. Microbiome-oriented clean water technology
    10. Bioremediation of shrimp biofloc wastewater through co-culture of clams, seaweed, and fish
    11. Microbial fermentation and resource recovery from biowaste
    12. Biofloc technology as an advanced zero-waste and water efficient practice
    13. Novel microbial biotechnology approaches for waste recovery and use in aquaculture
    14. Industrial waste utilization in aquaculture
    15. Aquamimicry: Concept and application for sustainable aquaculture
    16. FLOCponics as a sustainable and environmentally friendly system
    17. IMTA as a sustainable and environmentally friendly system
    18. Novel nutraceuticals from waste resources: Looking beyond the aqua-industry
    19. Zero waste from fiber crops
    20. Utilization of agro-industrial waste in ornamental fish culture
    21. Nutritional interventions in a bio-based circular economy
    22. Introducing insects into a circular-based economy in aquaculture
    23. Novel flocculants from waste derivatives: A way to improve biofloc systems functioning

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