西南石油大学学报(自然科学版) ›› 2007, Vol. 29 ›› Issue (3): 91-93.DOI: 10.3863/j.issn.1000-2634.2007.03.025

• 油气化学工程与化工 • 上一篇    下一篇

新型耐温抗高盐驱油泡沫体系的确定

刁素1 蒲万芬2 黄禹忠1 颜晋川1 方行1   

  1. (1. 中石化西南分公司工程技术研究院,四川 德阳 618000; 2. “油气藏地质及开发工程”国家重点实验室·西南石油大学)
  • 收稿日期:2006-08-02 修回日期:1900-01-01 出版日期:2007-06-20 发布日期:2007-06-20
  • 通讯作者: 刁素

THE NEW OILFLOODING FOAM SYSTEM OF TEMPREATURERESISTANCE AND HIGH SALTRESISTANCE

DIAO Su 1 PU Wan-fen 2 HUANG Yu-zhong 1 et al.

  

  1. (Engineering Technology Institute of Southwest Petroleum Branch, SINOPEC, Deyang Sichuan 618000, China)
  • Received:2006-08-02 Revised:1900-01-01 Online:2007-06-20 Published:2007-06-20
  • Contact: DIAO Su

摘要: 采用抗盐性能较好的起泡剂XN,对三种抗盐性较好的稳泡剂HXYP、YPA、PAM,在温度为80℃,矿化度为20.3×10 4mg/L条件下,进行了单独和两两复配后的起泡性能对比。实验结果显示:在稳泡剂和起泡剂总浓度相同的条件下,单一稳泡剂体系和YPA与PAM复配稳泡体系不能产生稳定的泡沫,HXYP与YPA、 PAM复配稳泡体系均在配比为9∶1条件下抗盐性能最佳。并对这两种复配稳泡体系进行了起泡剂和稳泡剂总量的优选,确定了泡沫体系的两种配方:①稳泡剂:HXYP1800mg/L+YPA200mg/L,起泡剂:XN2 000mg/L;②稳泡剂:HXYP1800mg/L+PAM200mg/L,起泡剂:XN2000mg/L。两个体系的泡沫质量和半衰期分别为68%、59.7min和67.7%、64.1min,抗高盐性能优越。

关键词: 高矿化度, 复配稳泡剂, 体系, 泡沫, 稳定性, 驱油

Abstract: The foamer XN with better saltresistance property is taken to correlate the foambility of the three types of foam stabilizer HXYP, YPA, PAM with better saltresistance property seprately and in pair under the conditions of 80℃ and the salility of 20.3×104 gm/L. The experimental result shows, under the condition of same toatl concentration of foamer and stablizer, the single stablizer system and the composite foam stablizer system of YPA and PAM can not produce steady foam, and the composite foam stablizer systems of HXYP, YAP and PAM are of best saltresistance property when the composite ratio is 9∶1. Optimization of the total amount of foamer and stablizer is done to the two types of composite foam stablizer systems, two types of receipts of foam systems are determined under the condition ,(1) stablizer:HXYP1800 mg/l+YAP200mg/L, foamer: 2000mg/L; (2) stablizer:HXYP1800mg/l+PAM200mg/L,foamer:XN2000mg/L. The foam quality and dispersation of the two systems are 68%, 59.7min and 67.7%, 64.1min respectively, and the property of high saltresistance is excellent.

Key words: high salinity, composite foam stabilizer, foam system, stability, oil displacement

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