TECHNICAL ASSESSMENT OF PRODUCED WATER TREATMENT TECHNOLOGIES

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TECHNICAL ASSESSMENT OF PRODUCED WATER TREATMENT TECHNOLOGIES ( technical-assessment-produced-water-treatment-technologies )

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RPSEA Project 07122-12 TECHNICAL ASSESSMENT OF PRODUCED WATER TREATMENT TECHNOLOGIES 1st Edition Table 47. Summary of technical assessment for Eco-Sphere: OzonixTM process. Criteria Production efficiency (recovery) Infrastructure considerations Energy consumption Chemicals Life cycle Overall costs Pre-and post treatment Description/Rationale Pilot study reports purified water recovery approaching 75%. Vendor claims a 1% waste stream for disposal, with the rest of the solution being retained for reuse as frac water. Operational footprint of pilot study system is reported as being ‘roughly’ the size of a frac tank. The energy consumption is estimated at 52 kWh/kgal (2.2 kWh/bbl) Chemical requirements include aluminum sulfate for coagulation and scale inhibitors for RO subsystem. Life cycle information is not yet available. Operational and capitol costs are not specified by vendor. All pretreatment requirements are already integrated into the system. Remineralization and water stabilization may be required for RO permeate stream. Any remaining brine stream will require disposal through injection. Excellent – Treatment provides robust pretreatment to limit organic and hard salt loading on high-pressure membranes. Back to the list of technologies O&M considerations Commercial system is expected to require two-fulltime operators. High level of flexibility: easily adapts to highly varying water quality and quantity. Highly robust pretreatment process. Reliability needs to be demonstrated through long-term operation. Types of energy required: electrical. Concentrate management or waste disposal Applicability for produced water treatment Note: 1 barrel = 42 US gallons 127

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