TECHNIQUE FOR REMOVAL OF ORGANICS AND DISSOLVED SOLIDS FROM AQUEOUS MEDIAS VIA SUPERCRITICAL TREATMENT
    7.
    发明申请
    TECHNIQUE FOR REMOVAL OF ORGANICS AND DISSOLVED SOLIDS FROM AQUEOUS MEDIAS VIA SUPERCRITICAL TREATMENT 有权
    通过超临界处理从有机介质中去除有机物和溶解固体的技术

    公开(公告)号:US20140346114A1

    公开(公告)日:2014-11-27

    申请号:US14373778

    申请日:2013-01-24

    Abstract: 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 and promote the water/gas shift reaction. The effluent from the super critical reactor is then cooled and any formed gases separated from the remaining liquid. The remaining liquid can then be introduced back into the environment and the gases can be used to heat the super critical reactor.

    Abstract translation: 来自压裂的流动和产物废水可以使用沉淀方法进行清洁和重新利用,该沉淀方法部分地包括超临界反应堆30.最初,废水被处理以除去固体,破坏细菌并沉淀出某些盐,例如钡 ,锶,钙,镁和铁。 废水然后可以通过放射性物质吸附单元20以除去镭以及其他放射性物质,然后被引入超临界反应器30.超临界反应器被设计成使废水达到超临界条件 在反应器的中心部分。 这导致任何溶解的固体,特别是氯化钠等从反应器30中心42的溶液中沉淀出来,从而避免反应器壁上的结垢。 可以使用催化剂来促进碳键的分解并促进水/气转移反应。 然后将来自超临界反应器的流出物冷却,并将任何形成的气体与剩余液体分离。 然后将剩余的液体引回到环境中,并且可以使用气体来加热超临界反应器。

    CONTINUOUS CARBON FOAM MATERIAL MANUFACTURING SYSTEMS AND METHODS

    公开(公告)号:US20240228288A9

    公开(公告)日:2024-07-11

    申请号:US18494373

    申请日:2023-10-25

    CPC classification number: C01B32/05 B01J6/008 E04F13/14

    Abstract: A system and method for producing a coal product from a carbon source material. The coal product may include a green carbon foam, a finished carbon foam, and/or a coal siding product. The system and method for producing a green carbon foam may involve pulverizing the carbon source material prior to processing the pulverized carbon source material to produce the green carbon foam using a float bath or an extruder. During production of the green carbon foam, the temperature of the float bath or extruder may be maintained at a temperature determined relative to the Gieseler fluidity properties of the carbon source material used.

    CONTINUOUS CARBON FOAM MATERIAL MANUFACTURING SYSTEMS AND METHODS

    公开(公告)号:US20240132355A1

    公开(公告)日:2024-04-25

    申请号:US18494373

    申请日:2023-10-24

    CPC classification number: C01B32/05 B01J6/008 E04F13/14

    Abstract: A system and method for producing a coal product from a carbon source material. The coal product may include a green carbon foam, a finished carbon foam, and/or a coal siding product. The system and method for producing a green carbon foam may involve pulverizing the carbon source material prior to processing the pulverized carbon source material to produce the green carbon foam using a float bath or an extruder. During production of the green carbon foam, the temperature of the float bath or extruder may be maintained at a temperature determined relative to the Gieseler fluidity properties of the carbon source material used.

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