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真实无机结垢场景下最低抑菌浓度的灵敏监测

Sensitive Monitoring of the Minimum Inhibitor Concentration under Real Inorganic Scaling Scenarios.

作者信息

Freitas Vitória M S, Paschoalino Waldemir J, Vieira Luis C S, Silva Jussara M, Couto Bruno C, Gobbi Angelo L, Lima Renato S

机构信息

Brazilian Nanotechnology National Laboratory, Brazilian Center for Research in Energy and Materials, Campinas, São Paulo 13083-970, Brazil.

Leopoldo Américo Miguez de Mello Research and Development Center, Petrobras, Rio de Janeiro, RJ 21941-598, Brazil.

出版信息

ACS Omega. 2024 Aug 15;9(38):39724-39732. doi: 10.1021/acsomega.4c04912. eCollection 2024 Sep 24.

Abstract

Flow assurance is a long-term challenge for oil and gas exploration as it plays a key role in designing safe and efficient operation techniques to ensure the uninterrupted transport of reservoir fluids. In this regard, the sensitive monitoring of the scale formation process is important by providing an accurate assessment of the minimum inhibitor concentration (MIC) of antiscale products. The optimum dosage of antiscale inputs is of pivotal relevance as their application at concentrations both lower and higher than MIC can imply pipeline blockages, critically hindering the entire supply chain of oil-related inputs and products to society. Using a simple and low-cost impedimetric platform, we here address the monitoring of the scale formation on stainless-steel capillaries from its early stages under real topside (ambient pressure and 60 °C) and subsea (1000 psi and 80 °C) sceneries of the oil industry. The method could continuously gauge the scale formation with a sensitivity higher than the conventional approach, i.e., the tube blocking test (TBT), which proved to be mandatory for avoiding misleading inferences on the MIC. In fact, whereas our sensor could entail accurate MICs, as confirmed by scanning electron microscopy, TBT suffered from negative deviations, with the predicted MICs being lower than the real values. Importantly, the impedance measurements were performed through a hand-held, user-friendly workstation. In this way, our method is envisioned to deliver an attractive and readily deployable platform to combat the scale formation issues because it can continuously monitor the salt precipitation from its early stages and yield the accurate determination of MIC.

摘要

流动保障是石油和天然气勘探中的一项长期挑战,因为它在设计安全高效的操作技术以确保储层流体的不间断输送方面起着关键作用。在这方面,通过准确评估防垢产品的最低抑制剂浓度(MIC),对垢形成过程进行灵敏监测非常重要。防垢剂投入的最佳用量至关重要,因为其在低于和高于MIC的浓度下使用都可能意味着管道堵塞,严重阻碍石油相关投入和产品向社会的整个供应链。我们在此使用一个简单且低成本的阻抗平台,解决在石油工业实际的海上(常压和60°C)和海底(1000 psi和80°C)场景下,不锈钢毛细管上垢形成早期阶段的监测问题。该方法能够以高于传统方法(即管堵塞试验(TBT))的灵敏度持续测量垢的形成,事实证明TBT对于避免在MIC上产生误导性推断是必不可少的。实际上,正如扫描电子显微镜所证实的,我们的传感器能够得出准确的MIC,而TBT存在负偏差,预测的MIC低于实际值。重要的是,阻抗测量是通过一个手持式、用户友好的工作站进行的。通过这种方式,我们的方法有望提供一个有吸引力且易于部署的平台来应对垢形成问题,因为它能够从早期阶段持续监测盐沉淀并准确测定MIC。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/040d/11425940/6fe5203dd0c3/ao4c04912_0005.jpg

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