Management of Concentrate from Desalination Plants

  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

Management of Concentrate from Desalination Plants provides an overview of the alternatives for managing concentrate generated by brackish water and seawater desalination plants, as well as site-specific factors involved in the selection of the most viable alternative for a given project, and the environmental permitting requirements and studies associated with their implementation. The book focuses on widely used alternatives for disposal of concentrate, including discharge to surface water bodies; disposal to the wastewater collection system; deep well injection; land application; evaporation; and zero liquid discharge. Direct discharge through new outfall; discharge through existing wastewater treatment plant outfall; and co-disposal with the cooling water of existing coastal power plant are thoroughly described, and design guidance for the use of these concentrate disposal alternatives is presented with engineers and practitioners in the field of desalination in mind. Key advantages, disadvantages, environmental impact issues, and possible solutions are presented for each discharge alternative. Easy-to-use graphs depicting construction costs as a function of concentrate flow rate are provided for all key concentrate management alternatives.

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  • Vægt610 g
  • coffee cup img
    10 cm
    book img
    19,1 cm
    23,5 cm

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    Crystallization. Cost Electrodialysis Adsorption Permeability Halophytes Colocation Regulatory requirements Environmental impacts Energy Use Energy Demand Mineral extraction Desorption Groundwater monitoring Reverse electrodialysis Transmissivity Alicante 1 desalination plant Ashkelon desalination plant Beneficial use Beneficial use of concentrate Carlsbad desalination plant Chemical cleaning residuals cleaning solutions Brackish brine Beneficial reuse feasibility Confined Aquifer Codisposal Coagulant Coastal population water demand Crop salinity tolerance Concentrate management practices Desalination plant discharge Desalination plant recovery rate Desalination production Ease of implementation Evaporation pond dikes Concentrate crystallization Concentrate regulations Concentrate treatment Concentrate volume calculation Concentrate management alternatives Concentrate selection management approach evaporation ponds Forward Osmosis Deep well injection Desalination status Integrated brine management land application Evaporation pond liners Evaporator crystallization Evaporation rate Land cost Future of concentrate management Maspalomas desalination plant Membrane distillation crystallization Near-shore discharge Gold Coast desalination plant PH adjustment system Powerplant cooling Pretreatment backwash water Perth desalination plant Regional concentrate management Rapid infiltration basin Sanitary sewer discharge Solar evaporation Solar Ponds Spent filtration media Surface water discharge Sodium adsorption ratio Strategic water resources Salt solidification Saltwater wetlands Thermal brine concentrators Submerged aeration Joint desalination and reuse Treated effluent salinity Surface water discharge case studies Mega-project risks Membrane brine concentrators Operational Constraints Osmotically assisted forward osmosis Mineral Precipitation Salinity tolerance evaluation Multistage RED Site footprint Outfall diffuser design Soil conductivity Solar irradiation intensity Spent filter backwash water Torrevieja Alicante desalination plant Residuals management permitting Tampa Bay desalination plant tidal zone Sorek desalination plant Shallow beach well disposal Spray evaporation ponds Thermal electricity Typical membrane cleaning solutions

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