微生物在油气开采中的应用

Zena J. Ameen
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引用次数: 0

摘要

微小生物是唯一被建议用于提高石油采收率估算(EOR)技术的单细胞生物,因为它们具有许多理想的特性,包括结构简单,在获得重要营养物质时生长速度不可持续,从而释放出气溶胶、酸、最低限度的润滑剂、表面活性剂和聚合物等新陈代谢化学物质。乙酰丁酸梭状芽孢杆菌是从水稻集约化栽培土壤中分离出来的,能够利用淀粉和羧甲基纤维素等多糖生产生物丁醇,而碳氢化合物脱硫梭状芽孢杆菌则是从伊拉克的海洋沉积物中分离出来的,可在添加微量元素溶液的厌氧合成海水培养基中生长。这些细菌还能承受困难的条件 高盐度、高压和高温在地下地质构造中发挥作用并作出贡献。将营养物、乙酰丁酸梭菌、碳氢化合物脱硫弧菌和糖蜜的水混合物与营养物和细菌孢子注入储层。因此,这些微生物能够进行大量催化反应,从相对简单的营养化合物中生产出多种产品(生物溶剂、生物酸、生物气体和生物表面活性剂),并在有利条件下大量繁殖,增加了储层岩石的石油释放量。开始用药 70 天后,油井开始生产。开始注油 80 至 90 天后,检测到相对短暂的多不饱和脂肪、二氧化碳以及乙醇、1-丁醇和丙酮残留物。由于梭状芽孢杆菌的内生孢子具有很强的抵抗力,因此是用于 MEOR(微生物提高石油采收率)的几种微生物中最理想的一种。能够在原地生产生物表面活性剂的脱硫弧菌菌株也很有价值,这些生物表面活性剂有利于 MEOR 过程。营养物质通常以可发酵碳水化合物的形式提供,以促进微生物的新陈代谢。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Uses of Microorganisms in The Recovery of Oil and Gas
Microscopic organisms are the only single-celled organisms proposed for the advancement of techniques for Estimation of Oil Recovery (EOR) because they have numerous desirable properties, including a simple structure and an unsustainable growth rate when supplied with vital nutrients, resulting in the release of metabolic chemicals like Aerosols, acids, minimum lubricants, surfactants, and polymers. Clostridium acetobutylicum was isolated from intensive rice cultivation soil and has the ability to use polysaccharides such as starch and carboxylmethyl cellulose to produce biobutanol, while Desulfovibrio hydrocarbonoclasticus was isolated from marine sediment in Iraq and grows in anaerobic synthetic seawater medium with the addition of a trace element solution. These bacteria can also withstand difficult conditions High salinity, high pressure, and high temperature play roles and contribute to underground geological formations. An aqueous mixture of nutrients, Clostridium acetobutylicum, Desulfovibrio hydrocarbonoclasticus, and molasses with nutrient and bacterial spore injection into a reservoir. As a result, these microorganisms are capable of considerable catalytic reactions. production of a diverse spectrum of products (biosolvents, bioacids, biogases, and biosurfactants) from relatively simple nutritional compounds, multiply vigorously under favourable conditions, and have resulted in increased oil release from reservoir rock. The well began producing 70 days after the medication was started. 80 to 90 days after the injection began, relatively brief polyunsaturated fats, Carbon dioxide, and residues of ethanol, 1-butanol, and acetone were detected. Because of their highly resistant endospores, Clostridium are the most ideal of the several microbes used in MEOR (Microbial enhanced oil recovery). Desulfovibrio strains capable of producing biosurfactants in situ, which are beneficial to the MEOR process, are also valuable. Nutrients are often supplied as fermentable carbs to promote microbial metabolism.
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