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Compatibility of hydraulic fracturing additives with high salt concentrations for flowback water reuse

机译:高盐分水力压裂添加剂的兼容性,可用于回水回用

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One of the main challenges in the reuse of flowback and produced water in slickwater hydraulic fracturing is the compatibility between additives and high total dissolved solids (TDS) concentrations, which are the most difficult contaminants to remove. Typical polyacrylamide friction reducers show reduced effectiveness in water with high ionic content, so water must either be treated or diluted with freshwater to reduce salt content before reuse. The case for directly reusing produced water with high salt content is presented in this research. The first part of the study ascertains the effectiveness of various friction reducers in brines. While typical polyacrylamide friction reducers lose their efficacy at high salt concentrations, we have identified other polymers that are generally resistant to changes in salt concentration. The second part of the research assesses not only the effect of pumping high-TDS water into a formation, but also the impacts of salt-tolerant friction reducers on shale stability and fracture conductivity. Shale compatibility experiments determined that injecting water with a higher salinity into a water-sensitive formation can benefit shale stability. In addition, the friction reducing agents were shown to have secondary stabilizing effects on shale.
机译:在滑水水力压裂中回流和采出水的再利用中的主要挑战之一是添加剂与高总溶解固体(TDS)浓度之间的相容性,这是最难去除的污染物。典型的聚丙烯酰胺减阻剂在高离子含量的水中显示出降低的效力,因此在重新使用之前,必须对水进行处理或用淡水稀释以降低盐含量。本研究提出了直接回用含盐量高的采出水的案例。研究的第一部分确定了各种减摩剂在盐水中的有效性。虽然典型的聚丙烯酰胺减摩剂在高盐浓度下会失去功效,但我们发现了其他通常可抵抗盐浓度变化的聚合物。研究的第二部分不仅评估了将高TDS水泵入地层的效果,还评估了耐盐减摩剂对页岩稳定性和裂缝传导率的影响。页岩相容性实验确定,将盐度较高的水注入对水敏感的地层中,可以提高页岩的稳定性。另外,减摩剂显示出对页岩具有次要的稳定作用。

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