Achieving Zero Flaring through Oil Tanks Gas Recovery: Case Study from Oman

Haitham Al Kalbani, Faheem Al Marhoobi, Hamed Al Siyabi, Saleh Al Shabibi, Amran Al Kiyumi
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Abstract

The intensity of global warming has increased in recent years and reduction of greenhouse gases become a necessity. The Paris Agreement's recently signed by 196 countries long-term goal is to mitigate the global average temperature to well below 2 °C above pre-industrial levels (Wikipedia, 2018); and to limit the increase to 1.5 °C, as this will results in controlling the risks and effects of climate change. Governments are going towards stringent regulations and implementation of carbon credits. In oil and gas industry, gas is produced with oil and it is mostly treated and transported for various industrial uses. However, a significant portion of this gas is used in the facilities for power generation and other uses. Tanks for example, are usually blanketed by fuel gas. During the operation of the tanks gases are lost due flashing, level variation and thermal variation. The gases are usually collected in a header and then flared through atmospheric gas flares. The flaring will result in higher CO2 emission. Inefficient flares will also result in incomplete combustion of hydrocarbon and consequently the emission of methane and other gases. Currently, there are various technologies used to recover the gas, compress it and reuse it. Ejector, Eductor or compressors are mainly used for such application. Depending on the available resources, utilities, operational and maintenance experience and the return on investment any of these technologies can be selected. Daleel Petroleum LLC, who are operating a field in Oman, set a target of zero flaring by initially installing a gas treatment and compression plant to recover associated gas which was successfully commissioned in 2018. The next step is to recover the gas from the tanks, compress it and send to the gas treatment plant for further processing. This study covers Daleel petroleum LLC's approach in selecting the optimum technology for AP gas recovery and utilization. The study focused on setting the selection criteria and return on investment. A selection criteria will provide other operators with a holistic approach to take decision towards zero flaring and it will set a clear path on how to achieve it.
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通过油罐天然气回收实现零燃除:阿曼案例研究
近年来,全球变暖的强度有所增加,减少温室气体成为一种必要。196个国家最近签署的《巴黎协定》的长期目标是将全球平均温度降低到远低于工业化前水平2°C的水平(维基百科,2018年);并将升温限制在1.5°C以内,因为这将有助于控制气候变化的风险和影响。各国政府正朝着严格监管和实施碳信用额的方向发展。在石油和天然气工业中,天然气是与石油一起生产的,主要用于各种工业用途的处理和运输。然而,这种气体的很大一部分用于发电和其他用途的设施。例如,油箱通常被燃料气体覆盖。在储罐运行过程中,由于闪蒸、液位变化和热变化,气体会丢失。这些气体通常被收集在一个集气管中,然后通过大气气体火炬燃烧。燃烧将导致更高的二氧化碳排放量。低效的燃烧也会导致碳氢化合物的不完全燃烧,从而排放甲烷和其他气体。目前,有各种各样的技术用于回收、压缩和再利用气体。喷射器、喷射器或压缩机主要用于此类应用。根据可用资源、公用事业、操作和维护经验以及投资回报,可以选择这些技术中的任何一种。Daleel Petroleum LLC在阿曼经营一个油田,通过最初安装一个气体处理和压缩装置来回收伴生气体,该装置于2018年成功投产,从而设定了零燃烧的目标。下一步是从储罐中回收气体,压缩后送至气体处理厂进行进一步处理。该研究涵盖了Daleel petroleum LLC选择AP气回收利用最佳技术的方法。研究的重点是制定选择标准和投资回报。选择标准将为其他作业者提供全面的方法来决定零燃除,并为如何实现这一目标设定明确的路径。
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