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The Use of Glutamic Diacetic Acid(GLDA)and Boiling Liquid Expanding Vapour Explosion(BLEVE)in Tight Gas Recovery

机译:使用谷氨酸(GLDA)和沸腾的液体膨胀蒸汽爆炸(BLLEVE)在紧的气体回收中

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As global demand for energy rises and more nations turn towards environmental friendly energy sources, attention is shifted to cleaner and economically viable energy sources.Natural gas,with 43%and 30% lesser carbon emission than coal and oil respectively,is among these sources.However,most of the natural gas reserves–including tight gas which this paper focuses on-are present in impermeable rock formations,and the extraction processes used sometimes raises concerns over the impact on the envi-ronment and fresh water reserves.These often times increases regulatory scrutiny and delay in exploi-tation.This paper explores the enhancement of reservoir permeability through first acidizing with Glutamic Diacetic Acid(GLDA),an organic substance with low corrosion potential and increased effectiveness with increasing temperature,and then using a Boiling Liquid Expanding Vapour Explosion (BLEVE)–specifically liquefied nitrogen in ceramic globes.This combination will not only achieve maximum permeability,but will also ensure that propants-ceramic splinters-are strategically placed within the wormholes formed and consequently improve gas recovery.This method supersedes conven-tional ones by being more environmentally friendly;nitrogen is already a component of air and is easily gotten and dispelled into the atmosphere;and in its capacity as a BLEV,significantly reduces the use of fresh water for fracturing.GLDA as a chelating agent forms unreactive complexes with regards to the environment and eliminates the need for iron control agents.The fast spending and high corrosion potential associated with mud acid is removed–well tubulars last longer,and this method is consequently more cost effective.
机译:随着全球对能源的需求和更多国家转向环保型能源,关注被转移到清洁和经济上可行的能源。天然气,分别具有43%和30%的碳排放量,是这些来源。然而,大多数天然气储量 - 包括本文在不透水的岩层中侧存在的紧密气体,并且使用的提取过程有时会引起对环境影响和淡水储备的影响。这些常常增加进攻性审查和延迟延迟。本文通过用谷氨酸(GLDA)的酸化,腐蚀潜力低的有机物质探讨了储层渗透性的增强,并随着温度的增加,效率增加,然后使用沸腾的液体膨胀蒸气爆炸(BLEVE)在陶瓷地球中的特异性液化氮。这一组合不仅可以获得最大数量可折射率,但也可以确保陶瓷碎片 - 策略性地放置在形成的虫洞内,从而改善气体回收。这方法通过更环保地取代了总共;氮气已经是空气的成分,并且很容易得到空气的组成部分散发到大气中;并且其作为BLEV的能力,显着减少了淡水用于裂冲的淡水。由于螯合剂在环境中形成不反应的复合物,并消除了对铁控制剂的需求。快速支出和高与泥酸相关的腐蚀电位持续更长时间,因此该方法更具成本效益。

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