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用于油气井固井的重型赤铁矿基地质聚合物的开发。

Development of Heavy-Weight Hematite-Based Geopolymers for Oil and Gas Well Cementing.

作者信息

Abdelaal Ahmed, Elkatatny Salaheldin, Abd El Fattah Ahmed Mohsen

机构信息

College of Petroleum Engineering and Geosciences, King Fahd University of Petroleum & Minerals, Dhahran, Eastern Province 31261, Saudi Arabia.

Department of Architecture, King Fahd University of Petroleum & Minerals, Dhahran, Eastern Province 31261, Saudi Arabia.

出版信息

ACS Omega. 2023 Apr 4;8(15):14025-14033. doi: 10.1021/acsomega.3c00590. eCollection 2023 Apr 18.

Abstract

In the petroleum industry, ordinary Portland cement (OPC) is utilized for different cementing applications. Yet, there are some technical and environmental issues for the usage of OPC in well cementing. The technical problems include gas invasion while setting, instability at corrosive environments, cement failure while perforation and fracturing due to high stiffness and brittleness, and strength reduction and thermal instability at elevated temperatures. Moreover, OPC production consumes massive energy and generates high greenhouse gas emissions. This study introduced the first hematite-based class F fly ash geopolymer formulation that can be used in oil and gas well cementing. Different properties of the designed slurry and hardened samples such as rheology, thickening time, strength, and elastic and petrophysical properties were evaluated. Moreover, mixability and pumpability challenges of heavy-weight geopolymer slurries were investigated. Unlike most of the studies in the literature, this work used 4 M NaOH solution only as an activator that can reduce the overall cost. The results showed that increasing the hematite percentage significantly decreased the thickening time. The developed formulation fell within the recommended fluid loss ranges for some cementing applications without using a fluid loss control additive. A proposed mixture of retarder and superplasticizer was introduced to enhance the thickening time by almost 5 times. The compressive strength increased by 49% and the tensile strength was enhanced by 27.4% by increasing the curing time from 1 to 7 days. The improvement in both compressive and tensile strength with curing time indicated that the geopolymerization reaction continued for extended time but with a smaller rate. The developed slurry acted more like a power law fluid at low temperatures and more like a Bingham plastic fluid at high temperatures. The elastic properties of the developed geopolymer samples proved that they are more flexible than some cement systems.

摘要

在石油工业中,普通硅酸盐水泥(OPC)被用于不同的固井作业。然而,在油井固井中使用OPC存在一些技术和环境问题。技术问题包括凝固时的气体侵入、在腐蚀性环境中的不稳定性、由于高刚度和脆性导致射孔和压裂时的水泥失效,以及高温下的强度降低和热不稳定性。此外,OPC生产消耗大量能源并产生高温室气体排放。本研究介绍了第一种可用于油气井固井的赤铁矿基F类粉煤灰地质聚合物配方。对设计的水泥浆和硬化样品的不同性能,如流变学、稠化时间、强度以及弹性和岩石物理性能进行了评估。此外,还研究了重质地质聚合物水泥浆的可混合性和可泵性挑战。与文献中的大多数研究不同,这项工作仅使用4M NaOH溶液作为活化剂,这可以降低总成本。结果表明,增加赤铁矿百分比会显著降低稠化时间。在不使用降滤失添加剂的情况下,开发的配方在某些固井应用的推荐滤失范围内。引入了一种缓凝剂和高效减水剂的建议混合物,使稠化时间延长了近5倍。通过将养护时间从1天增加到7天,抗压强度提高了49%,抗拉强度提高了27.4%。抗压强度和抗拉强度随养护时间的提高表明,地质聚合反应持续时间更长,但速率更小。开发的水泥浆在低温下更像幂律流体,在高温下更像宾汉塑性流体。开发的地质聚合物样品的弹性性能证明它们比一些水泥体系更具柔韧性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f60d/10116515/7b9ef69992cd/ao3c00590_0002.jpg

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