Surf Lakes – Engineering Design
Surf Lakes waterbody classification analysis and detailed water treatment reticulation study concurrent with detailed design of an Australian base Surf Park wave generation facility.
Surf Lakes waterbody classification analysis and detailed water treatment reticulation study concurrent with detailed design of an Australian base Surf Park wave generation facility.
Feasibility study determining the reliability of existing water sources and define the costs associated with accessing and treating water for a prospective hydrogen project.
Well-known Barbados food outlet turns to Ecohesion (Integrated Sustasinability) for potable water supply, purification, wastewater treatment, and reuse water reclamation.
Implement an integrated Blue Economy policy framework and strategic action plan with local Caribbean partners and international specialists.
Conceptual design to upgrade the two wastewater treatment facilities in Barbados (the Bridgetown & South Coast Wastewater Treatment Plants)
Development of a 10,000 m3/day river water intake, water storage tanks, 10,000 m3/day treatment facility, and 200,000 m3 saline water storage ponds
Major constituent removal was focused on selenium and metals and was designed to treat water to environmental discharge criteria. The selenium treatment system can perform up to 6,500 m3/day.
Secondary treatment of HDS plant effluent and TMF supernatant to remove dissolved metals (particularly copper), nitrate, and selenium
Design-build turnkey delivery of nine H2S scavenging skids, including two of the largest H2S scavenging skid packages in Alberta.
Treatment of dissolved metals (Cd, Cu, Fe, Zn), as well as ammonia, from several underground sources prior to discharge into the environment.
Design, Build, Finance, and Operation of a dedicated 4,000 m3/d water treatment facility for on-demand water recycle. Provided the design and operation of the facility with guaranteed performance to
Feasibility level engineering design and cost estimating for a mine water treatment plant.
Major constituents for removal included copper, cadmium, iron, arsenic, and ammonia. Plant designed for peak
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