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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 Table 1. Description of assessment criteria Criteria Feed water quality bins Product water quality Production efficiency (recovery) Infrastructure considerations Energy consumption Chemicals Life cycle Description/Rationale Applicable TDS range, types of water chemistry makeup, constituents of concerns including: hydrocarbons, suspended solids, hardness, boron, silica, barium, iron, manganese, etc Overall reported or estimated rejection in terms of TDS, sodium, organic constituents, heavy metals, ammonia, and others Specific production efficiency in terms of reported and/or estimated product water recovery Known infrastructure constraints or considerations such as modularity, mobility, energy type, relative footprint, electrical supply, housing, brine discharge, chemical storage, etc. Types of energy needed and power requirements Types of chemicals required for process control (such as for regeneration, fouling, scaling, alkalinity, corrosion, and disinfection) and cleaning Expected life of the process and replacement needs Industrial status Emerging or existing technology in which industry, whether being previously employed for produced water treatment and to what level (full-scale, pilot-scale, bench-scale), whether it is a competitive or non- competitive vendor market (including supplier names), minimum and maximum plant size O&M considerations Levels of monitoring and control required, including quality control Level of skilled labor required Level of flexibility: easy to adapt to highly varying water quantity and quality Level of robustness: ability of the equipment to withstand harsh conditions, such as cold weather climates, shut-down and restart Level of reliability – little down time, need for maintenance Types of energy required Overall costs Reported treatment, capital, operation, and maintenance costs. Identification of major cost components including waste disposal. Identification of components offering most cost reduction opportunities Pre-and post treatment Concentrate management or waste disposal Applicability in produced water treatment Types and levels of pre- and post-treatment required by the technology Waste to feed volume ratio. Concentrate treatment and/or available disposal options of concentrate or solid wastes. Special disposal considerations, if any Qualitatively scoring the technology for the produced water application criterion (excellent to poor) 4

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