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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 Figure 33. Schematic of the 212 Resources water treatment system (Source: [137]). Table 36. Summary of technical assessment of the 212 Resources water treatment system. Criteria Industrial status Feed water quality bins Product water quality Production efficiency (recovery) Infrastructure considerations Energy consumption Life cycle Description/Rationale Full-scale application for frac water treatment in Wyoming and Colorado. Applicable to TDS <110,000 mg/L, and a broad variety of water chemistry makeup. Similar to other MVR technology, product water quality is expected high with TDS in the range of 10-100 mg/L. Trace amounts of volatile hydrocarbons present in desalted water can be removed by carbon filtration. Product water recovery is between 90 and 95%, depending on feed water quality. No special infrastructural requirement as the unit is skid-mounted. The footprint of pods is 40’x60’. Require gas or electricity as power. The energy consumption is expected to be comparable to the pressure distillation methods such as MVC, about 30 kWh/kgal (1.3 kWh/bbl) of product water. Typically expected 20 years, although longer life may be expected with the selection of better materials of construction, that is, alloys with high corrosion resistance [93]. Chemicals Similar to other thermal technologies, scale inhibitor and acid may be required for process control to prevent scaling. Corrosion control is achieved via pH control. Annual cleaning is typically conducted using acid, EDTA, or other antiscaling chemicals. O&M considerations High level of monitoring and control required for feed pH, flow rates as well as steam and vessel pressures. High level of skilled labor required to operate MVR evaporators. High level of flexibility: easy to adapt to highly varying water quality and quantity. High level of robustness: high ability of the equipment to withstand harsh conditions. High level of reliability. Types of energy required: Gas or electricity. 96

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