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Carbon Footprint Estimation for Oil Production: Iraq Case Study for The Utilization of Waste Gas in Generating Electricity

机译:石油生产的碳足迹估算:伊拉克在发电中利用废气的案例研究

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摘要

Oil is the main energy resource on earth since its discovery, and Iraq depends mainly on crude oil to generate electricity. The process of oil extrusion differs depending on the physical nature and the accessibility of the reservoirs. In Iraq as a case study, the production of oil is easier, and relatively cost effective due to its high pressure which makes oil emerge to the surface with minimum effort compared to other deep reserves. Oil production is usually connected with high waste. In this study case, the main issues addressed are the waste of oil production and the associated gas as a co-product. Associated gas is a blend of hydrocarbons dissolved in the oil under high pressure underground reservoirs. It is naturally released when crude oil is brought to the surface under low pressure [1].The aim of this study is to estimate the carbon footprint of crude oil production in Iraq. It considers the associated gas, a part of the production lifecycle in order to propose an alternative energy utilization solution that can reduce the energy waste as well as the carbon footprint. The energy estimation is then used to substitute the equivalent generated electricity from fossil fuel.Basic mathematics is used to estimate the potential energy of the flare gas in order to evaluate the equivalent energy losses. Umberto software is used to estimate the carbon footprint for both flared gas and the electricity generation based on kWh.While the flared gas can be reprocessed to avoid energy waste, this has its own drawbacks. The main drawback of this solution is that the gas needs to be liquefied in order to be efficiently transported. This, as a result, implies a high energy consumption as well as carbon dioxide emissions in both processing and transportation.The outcome of this study is to utilize the flared gas in generating electricity instead of the adopted method of using fossil fuel. This solution potentially saves about 50 million tons of carbon dioxide annually as per todays production rates.
机译:石油自被发现以来就是地球上的主要能源,伊拉克主要依靠原油来发电。油的挤出过程取决于储层的物理性质和可及性。在伊拉克,以石油为例,与其他深层储量相比,由于其高压使得石油以最小的工作量浮出地面,因此石油的生产更加容易,并且相对具有成本效益。石油生产通常伴随着高浪费。在此研究案例中,解决的主要问题是石油生产的浪费以及副产物伴生气。伴生气是在高压地下油藏下溶解在石油中的碳氢化合物的混合物。当原油在低压下进入地面时会自然释放[1]。本研究的目的是估计伊拉克原油生产的碳足迹。为了提出一种替代能源利用解决方案,它可以减少能源浪费以及碳足迹,因此将其视为生产生命周期的一部分。然后使用能量估计值来替代化石燃料产生的等效电力。基本数学用于估计火炬气的势能,以评估等效能量损失。 Umberto软件用于基于kWh估算火炬气和发电的碳足迹。虽然可以对火炬气进行重新处理以避免能源浪费,但这有其自身的缺点。该解决方案的主要缺点是气体需要被液化以便被有效地运输。因此,这意味着在加工和运输过程中都将消耗大量能源并排放二氧化碳。本研究的结果是利用火炬气发电,而不是采用化石燃料。按照目前的生产率,该解决方案每年可以节省约5000万吨的二氧化碳。

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