Xia Xiujian, Yu Yongjin, Li Pengpeng, Qi Fengzhong, Zhai Xianzhi, Meng Renzhou, Zhang Chi, Xu Pu, Guo Jintang
CNPC Engineering Technology R&D Company Limited, Huanghe Street 5, Beijing 102206, China.
National Engineering Research Center of Oil & Gas Drilling and Completion Technology, Huanghe Street 5, Beijing 102206, China.
ACS Omega. 2025 Mar 14;10(11):11027-11037. doi: 10.1021/acsomega.4c09575. eCollection 2025 Mar 25.
Deep and ultradeep layers are important areas for increasing oil and gas storage and production. Cementing in complex environments, such as ultradeep and ultrahigh temperatures, poses serious challenges for key cementing materials. To solve the problems of conventional polymeric fluid loss additives, such as insufficient resistance to ultrahigh temperature, low-temperature thickening, and high-temperature dilution, an ultrahigh-temperature resistant fluid loss additive, DRF-3L, with low molecular weight was developed. It was synthesized through molecular structure optimization, introduction of temperature- and salt-resistant groups, and synergistic effect of poly(carboxylic acid)s, and its comprehensive performance was evaluated. Results show that the average molecular weight of DRF-3L is 29 534 Da, which is 92% lower than that of conventional products. It has the characteristics of no viscosity increase at low temperatures and a weak dispersion at high temperatures. An obvious thermogravimetric loss occurred above 330 °C, indicating that its molecular structure has strong thermal stability. DRF-3L is suitable for temperatures ranging from 10 to 240 °C and is resistant to saturated sodium chloride. The API fluid loss of saturated brine cement slurry with 5% DRF-3L was 42 mL at 240 °C. Meanwhile, DRF-3L had no adverse effect on the initial consistency, rheological properties, and mechanical strength development of the cement slurry. DRF-3L and its supporting cement slurry have been applied to more than 30 wells in Sichuan-Chongqing, Tarim, Bohai Bay, and other areas, and have been successfully used in the highest temperature well, Qiantan 1 (213 °C), in the Dagang Oilfield. The cementing quality is high, which provides engineering technical support for deep and ultradeep oil and gas exploration and development and has broad application prospects.
深层和超深层是增加油气储存和产量的重要区域。在超深和超高温等复杂环境中固井,对关键固井材料提出了严峻挑战。为解决传统聚合物降滤失剂存在的抗超高温能力不足、低温增稠和高温稀释等问题,研发了一种低分子量的抗超高温降滤失剂DRF-3L。通过分子结构优化、引入耐温耐盐基团以及多元羧酸的协同作用合成了该降滤失剂,并对其综合性能进行了评价。结果表明,DRF-3L的平均分子量为29534 Da,比传统产品低92%。它具有低温不增粘、高温分散性弱的特点。在330℃以上出现明显的热重损失,表明其分子结构具有较强的热稳定性。DRF-3L适用于10至240℃的温度范围,耐饱和氯化钠。含5% DRF-3L的饱和盐水水泥浆在240℃时的API滤失量为42 mL。同时,DRF-3L对水泥浆的初始稠度、流变性能和力学强度发展没有不利影响。DRF-3L及其配套水泥浆已在川渝、塔里木、渤海湾等地区的30多口井中应用,并成功应用于大港油田最高温度井(213℃)钱滩1井。固井质量高,为深层和超深层油气勘探开发提供了工程技术支持,具有广阔的应用前景。