DNA示踪技术在水力压裂返排分析中的应用

M. Asadi, Tyler Blair, Ben Kuiper, Bruce Cunningham, Tim Shamburger, Brendan Looyenga, Rogelio Morales
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引用次数: 1

摘要

提出了一种基于纳米封装二氧化硅DNA序列的新型示踪技术。这项尖端技术使每个DNA序列与磁性核心粒子结合,并用二氧化硅将其封装。因此,可以有无限的DNA示踪剂序列。每个DNA示踪剂都有其身份签名,可以很容易地识别和表征而不受干扰。独特的化学成分使这些DNA示踪剂要么是水湿的,要么是油湿的。水湿示踪剂可用于水力压裂中,精确、准确地对返排进行定性和定量分析。油湿示踪剂可用于评价水力压裂产油源和产油量。深入的实验室测试表明,与目前工业上使用的化学示踪剂不同,这些示踪剂在高温下是稳定的,不会与地层矿物学反应形成储层岩石镀层,不会分裂,也不会随着时间的推移而崩解。这些示踪剂以非常低的浓度注入液体填充的泥浆中,可以在万亿分之一的范围内检测到。
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DNA Tracer Technology Applications in Hydraulic Fracturing Flowback Analyses
A new and robust tracer technology, based on Nano-sized encapsulated silica DNA sequences is presented. This cutting-edge technology enables a bond of each DNA sequence to a magnetic core particle and encapsulates it with silica. Therefore, one can have infinite sequences of DNA tracers. Each DNA tracer, with its identity signature, can be easily identified and characterized with no interferences. Unique chemistry makes these DNA tracers, either water-wet or oil-wet. The water-wet tracers can be used in hydraulic fracturing to precisely and accurately analyze flowback, both qualitatively and quantitatively. The oil-wet tracers can be used in evaluating the source and quantity of oil production in hydraulic fracturing. In-depth laboratory testing indicates that these tracers, unlike current industry used chemical tracers, are stable at high temperature, do not react with formation mineralogy to form reservoir rock plating, do not partition, and do not disintegrate over time. These tracers are injected in the liquid-laden slurry at very low concentrations and can be detected at parts per trillion.
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