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New Hydrogen Sulfide Scavenger Development for Downhole Mixed Production Applications - Lab and Field Data

机译:新型硫化氢清除剂的井下混合生产应用 - 实验室和现场数据

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Production of sour crude oil releases hydrogen sulfide (H2S) into production tubing and surface equip- ment, causing corrosion, flow assurance issues, safety, and environmental concerns for the producer. As a result, increased costs related to metallurgical upgrades, gas sweetening equipment, increased manpower costs for monitoring, and liability from the potential release of H2S can become significant parts of the total operation cost. These issues can be alleviated if the H2S is reliably removed downhole and prevented from reaching the surface. Conventional hydrogen H2S scavengers such as triazines or glyoxal are commonly applied by direct injection topside to mitigate H2S in oil and gas production facilities. However, when applied in direct-injection applications, these scavengers exhibit slow kinetics that reduce their effectiveness in short residence-time systems, resulting in a much greater amount required than theoretical efficiency would predict. Neither triazines nor glyoxal are suitable for downhole application because of their low thermal stability and, in the case of triazine, its high scaling tendency. To achieve reliable and cost-effective removal of H2S topside or downhole, the development of a new scavenger and a new delivery system for downhole application was required. As a result, a new non-triazine, organic acid metal complex-based H2S scavenger (OAC) with high-temperature stability, fast kinetics and quantitative H2S removal was developed. The new delivery equipment comprises an injection skid, H2S monitoring equipment, and an automated chemical dosing system to ensure delivery of the precise dosage required to remove H2S downhole. Field test results for the new OAC scavenger and delivery system will be presented for mixed production applications, demonstrating the ability of this approach to reliably remove H2S both topside and downhole.
机译:酸原油生产将硫化氢(H2S)释放到生产管道和表面配备中,引起生产者的腐蚀,流量保证问题,安全和环境问题。因此,与冶金升级有关的成本增加,气体加油设备增加了监测的人力成本,以及来自H2S的潜在释放的责任可以成为总运营成本的重要部分。如果H2S可靠地移除井下并防止到达表面,则可以缓解这些问题。常规氢H2S清除剂如三嗪或乙二醛通常通过直接注射顶部施加,以减轻石油和天然气生产设施中的H2S。然而,当应用于直喷应用时,这些清除剂表现出缓慢的动力学,从而降低了短暂停留时间系统的有效性,导致比理论效率更大的金额将预测。由于其低热稳定性,并且在三嗪的情况下,三嗪和乙二醛都不适合井下施用,并且其高缩放趋势。为了实现可靠且经济效益的H2S顶部或井下的拆卸,需要开发新的清道夫和新的送货系统的井下申请。结果,开发了一种新的非三嗪,具有高温稳定性,快速动力学和定量H2S去除的基于基于基于的有机酸金属络合物的H2S清除剂(OAC)。新的递送设备包括注射液,H2S监测设备和自动化化学计量系统,以确保递送去孔除去H2S所需的精确剂量。将介绍新的OAC清除剂和交付系统的现场测试结果,以展示混合生产应用,展示这种方法可靠地除去H2S两端和井下的能力。

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