Wang Guang, Ma Qinyue, Ren Longqiang, Hou Jirui
Unconventional Petroleum Research Institute, China University of Petroleum-Beijing, Beijing 102249, China.
Bei Jing Kun Lun Long Yuan Petroleum Exploitation Technology Co., Ltd., Beijing 102200, China.
Polymers (Basel). 2024 Sep 12;16(18):2575. doi: 10.3390/polym16182575.
The wettability of the proppant is crucial in optimizing the flowback of fracturing fluids and improving the recovery of the produced hydrocarbons. Neutral wet proppants have been proven to improve the fluid flow by reducing the interaction between the fluid and the proppant surface. In this study, a lightweight amphiphobic proppant (LWAP) was prepared by coating a lightweight ceramic proppant (LWCP) with phenolic resin, epoxy resin, polytetrafluoroethylene (PTFE), and trimethoxy(1H,1H,2H,2H-heptadecafluorodecyl)silane (TMHFS) using a layer-by-layer method. The results indicated that the LWAP exhibited a breakage ratio of 2% under 52 MPa (7.5 K) closure stress, with an apparent density of 2.12 g/cm and a bulk density of 1.21 g/cm. The contact angles of water and olive oil were 125° and 104°, respectively, changing to 124° and 96° after displacement by water and diesel oil. A comparison showed that the LWAP could transport over a significantly longer distance than the LWCP, with the length increasing by more than 80%. Meanwhile, the LWAP displayed notable resistance to scale deposition on the proppant surface compared to the LWCP. Furthermore, the maintained conductivity of the LWAP was higher than that of the LWCP after displacement by water and oil phases alternately. The modified proppant could minimize production declines during hydrocarbon extraction in unconventional reservoirs.
支撑剂的润湿性对于优化压裂液的返排和提高产出烃类的采收率至关重要。已证实中性润湿性支撑剂可通过减少流体与支撑剂表面之间的相互作用来改善流体流动。在本研究中,采用逐层涂覆法,用酚醛树脂、环氧树脂、聚四氟乙烯(PTFE)和三甲氧基(1H,1H,2H,2H - 十七氟癸基)硅烷(TMHFS)对轻质陶瓷支撑剂(LWCP)进行涂覆,制备了一种轻质两疏支撑剂(LWAP)。结果表明,LWAP在52 MPa(7.5 K)闭合应力下的破碎率为2%,表观密度为2.12 g/cm³,堆积密度为1.21 g/cm³。水和橄榄油的接触角分别为125°和104°,在被水和柴油驱替后分别变为124°和96°。比较表明,LWAP的输送距离比LWCP显著更长,长度增加超过80%。同时,与LWCP相比,LWAP在支撑剂表面表现出显著的抗结垢性能。此外,在水相和油相交替驱替后,LWAP的保持电导率高于LWCP。这种改性支撑剂可使非常规油藏烃类开采过程中的产量下降最小化。