工业水处理 ›› 2025, Vol. 45 ›› Issue (7): 163-169. doi: 10.19965/j.cnki.iwt.2024-0716

• 试验研究 • 上一篇    

电离辐照及其耦合工艺处理压裂返排液的研究

王誉霖1(), 吴星东2, 张忠磊3, 胡小娟4, 陈海3, 何仕均1, 王诗宗1, 王英5   

  1. 1. 清华大学核能与新能源技术研究院环境技术研究室,北京 100084
    2. 中海油能源发展股份有限 公司采办共享中心,天津 300452
    3. 中广核达胜科技有限公司,江苏 苏州 215214
    4. 中海油能源发展装 备技术有限公司,天津 300452
    5. 中海油能源发展装备技术有限公司湛江分公司,广东 湛江 524057
  • 收稿日期:2024-12-30 出版日期:2025-07-20 发布日期:2025-07-22
  • 作者简介:

    王誉霖(1974— ),工程博士,E-mail:

  • 基金资助:
    中海油能源发展装备技术有限公司与清华大学合作项目

Research on ionizing irradiation and its coupled processes for the treatment of fracturing flowback fluid

Yulin WANG1(), Xingdong WU2, Zhonglei ZHANG3, Xiaojuan HU4, Hai CHEN3, Shijun HE1, Shizong WANG1, Ying WANG5   

  1. 1. Institute of Nuclear and New Energy Technology, Tsinghua University, Beijing 100084, China
    2. Supply Chain Management Center, CNOOC Energy Technology & Services Ltd. , Tianjin 300452, China
    3. CGN Dasheng Technology;Co. , Ltd. , Suzhou 215214, China
    4. CNOOC EnerTech Equipment Technology Co. , Ltd. , Tianjin 300452, China
    5. Zhanjiang Branch, CNOOC Energy Development Equipment Technology Co. , Ltd. , Zhanjiang 524057, China
  • Received:2024-12-30 Online:2025-07-20 Published:2025-07-22

摘要:

油田开采过程产生大量压裂返排液,在淡水资源匮乏的油田开采地,处理后的压裂返排液要进行回注或者重新配制成压裂液。为了满足回注水水质的要求,针对压裂返排液中悬浮物、含油量和色度高的问题,研究了电离辐照及其耦合工艺对实际压裂返排液废水的处理效果,其中耦合试剂包括H2O2、过硫酸钾、膨润土及混凝剂。结果表明,单独电离辐照处理压裂返排液后,出水含油量不能满足《碎屑岩油藏注水水质指标及分析方法》(SY/T 5329—2012)中平均空气层渗透率<1.5 μm注入层水质的要求;在废水中加入H2O2、过硫酸钾和膨润土能显著增强电离辐照对压裂返排液中油类物质和悬浮物的去除效果,但对色度去除的促进作用并不显著,出水含油量能满足SY/T 5329—2012中平均空气层渗透率(0.5~1.5] μm注入层水质的要求;聚合硫酸铁(PFS)耦合电离辐照与单独使用PFS相比,不仅能减少PFS的投加量,还能显著提高废水各项指标的去除效率,油类物质、悬浮固体、色度去除率分别达到86.3%、76%、92%,出水含油量能满足SY/T 5329—2012中平均空气层渗透率(0.05~0.5] μm注入层水质的要求。

关键词: 压裂返排液, 电离辐照, 混凝, 过硫酸钾, 过氧化氢, 膨润土

Abstract:

A large volume of flowback fluid is generated during the oilfield fracturing process. In oilfield regions where freshwater resources are scarce, treated flowback fluid must either be reinjected or reconstituted into new fracturing fluid. To meet the requirements for reinjection water, this study addressed the challenges posed by high levels of suspended solids, oil content, and color in flowback fluid. It investigated the treatment effectiveness of ionizing radiation and its coupled processes on actual flowback wastewater. The coupling agents included hydrogen peroxide (H2O2), potassium persulfate, bentonite, and coagulants. The results showed that ionizing radiation treatment alone could not reduce the oil content in the effluent to meet the water quality standards for injection into formations with average air permeability <1.5 μm, as specified in the Specifications and Analytical Methods for Water Quality of Injection in Clastic Rock Reservoirs (SY/T 5329—2012). When H2O2, potassium persulfate, and bentonite were added, the removal efficiency of oil and suspended solids was significantly enhanced. However, the improvement of color removal was not as pronounced. The treated water met the SY/T 5329—2012 standards for formations with an average permeability of (0.5-1.5] μm. Furthermore, compared with using PFS alone, coupling polyferric sulfate (PFS) with ionizing radiation not only reduced the required dosage of PFS but also significantly improved the removal efficiency of all key pollutants. The removal rates of oil, suspended solids, and color reached 86.3%, 76%, and 92%, respectively. The effluent met the SY/T 5329—2012 standards for injection into formations with an average permeability of (0.05-0.5] μm.

Key words: fracturing flowback fluid, ionizing irradiation, coagulation, potassium persulfate, hydrogen peroxide, bentonite

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