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INTEGRATED PRECIPATATIVE-SUPER CRITICAL TECHNOLOGY FOR COST-EFFECTIVE TREATMENT OF FLOWBACK AND PRODUCED WATER FROM UNCONVENTIONAL GAS RESOURCES
INTEGRATED PRECIPATATIVE-SUPER CRITICAL TECHNOLOGY FOR COST-EFFECTIVE TREATMENT OF FLOWBACK AND PRODUCED WATER FROM UNCONVENTIONAL GAS RESOURCES
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机译:先进的综合超临界技术对非常规天然气资源中的反吹和生产水进行成本有效的处理
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摘要
Flow and product waste water from fracturing can be cleaned and reused utilizing a precipitation methodology incorporating, in part, a super critical reactor (30). Initially, the waste water is treated to remove solids, destroy bacteria, and precipitate out certain salts, such as barium, strontium, calcium, magnesium and iron. The waste water then can be passed through a radioactive material adsorption unit (20) to remove radium, as well as other radioactive materials, and then introduced into the super critical reactor (30). The super critical reactor is designed to bring the waste water to super critical conditions at a central portion of the reactor. This causes any dissolve solids, in particular sodium chloride and the like, to precipitate out of solution in the center (42) of the reactor (30) thereby avoiding scale formation on the walls of the reactor. A catalyst can be utilized to promote the breakdown of carbon bonds.
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