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陈武, 张健, 檀国荣, 靖波, 尹先清, 王大勇. 聚合物驱含油废水zeta电位影响因素及其处理条件研究[J]. 海洋石油, 2013, 33(3): 50-53,64. DOI: 10.3969/j.issn.l008-2336.2013.03.050
引用本文: 陈武, 张健, 檀国荣, 靖波, 尹先清, 王大勇. 聚合物驱含油废水zeta电位影响因素及其处理条件研究[J]. 海洋石油, 2013, 33(3): 50-53,64. DOI: 10.3969/j.issn.l008-2336.2013.03.050
CHEN Wu, ZHANG Jian, TAN Guorong, JING Bo, YIN Xianqing, WANG Dayong. Study on the Influencing Factor of Zeta Potential and Treating Conditions for Polymer-Flooded Oily Waste Water[J]. Offshore oil, 2013, 33(3): 50-53,64. DOI: 10.3969/j.issn.l008-2336.2013.03.050
Citation: CHEN Wu, ZHANG Jian, TAN Guorong, JING Bo, YIN Xianqing, WANG Dayong. Study on the Influencing Factor of Zeta Potential and Treating Conditions for Polymer-Flooded Oily Waste Water[J]. Offshore oil, 2013, 33(3): 50-53,64. DOI: 10.3969/j.issn.l008-2336.2013.03.050

聚合物驱含油废水zeta电位影响因素及其处理条件研究

Study on the Influencing Factor of Zeta Potential and Treating Conditions for Polymer-Flooded Oily Waste Water

  • 摘要: 研究了污水油含量、固体悬浮物含量及聚合物含量对含聚污水zeta电位大小的影响, 结果表明, 随着聚合物含量增加, 带电颗粒的zeta电位绝对值增加, 带电颗粒物质的平均相对位移相差显著; 含油量、固体悬浮物含量增加, 带电颗粒的zeta电位变化不明显, 带电颗粒物质的平均相对位移相差不显著。表明聚合物可能是影响聚合物驱采油废水稳定性的原因。通过测定不同搅拌速度、不同清水剂加量下污水的zeta电位, 结果表明搅拌转速为300r/min、清水剂BHQ-08加量100 mg/L 时, 对模拟和实际含聚污水中油的去除效率最高, 分别为64.2%、70.9%; zeta电位的绝对值降低率分别为12.51%、19.65%。在搅拌转速为300r/min时, 清水剂BHQ-08加量250mg/L时, zeta电位绝对值降到最小33.19mV, 此时絮凝聚集、除油效果为佳。研究结果为聚合物驱油田实际生产更好处理含聚合物污水提供技术参考。

     

    Abstract: The influence of oil content, solid suspend (SS) content and polymer concentration on zeta potential of polymer containing waste water has been studied. The result shows that with the increasing in polymer content, the zeta potential absolute value of charged particles, increase and the average relative displacement of charged particles changed obviously. With the increasing in oil content and solid suspend content have no great influence on zeta potential of charged particles and average relative displacement of charged particles. The result shows that polymer content is the main reason influencing the stability of polymer-flooded oily waste water. The zeta potential of wastewater has been determinated under different stirring rate and different dosage of coagulate flocculating agent. The results show that when the stirring rate is 300 r/min and coagulate flocculating agent BHQ-08 is 100 mg/L, the oil removal efficiency of polymer flooded wastewater is the highest in simulation and on-site polymer flooding, being 64.2% and 70.9% respectively. The absolute values of zeta potential for simulation and on-site polymer flooding decrease by 12.51% and 19.65% respectively. When the stirring rate is 300 r/min and coagulate flocculating agent BHQ-08 is 250 mg/L, absolute value of zeta potential decrease to the lowest, being 33.19 mV, with the best flocculating and aggregating effect, and the oil removal effect is also the best. The study results provide technical reference for processing wastewater containing polymers in oilfield polymer flooding.

     

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