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An experimental study on oxidizer treatment used to improve the seepage capacity of coal reservoirs

机译:氧化剂处理提高煤层渗流能力的试验研究。

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It is difficult to stimulate coal reservoirs in physical approaches, and the recovery factor of coalbed methane (CBM) can be enhanced by applying strong oxidizers through oxidation to stimulate coal reservoirs. At present, however, there have been very few studies on the oxidation of CBM and fewer experimental studies for systematically evaluating the effect of oxidation on the seepage capacity of coal reservoirs. In this paper, the coal samples taken from coal seams of the Jurassic Xishanyao Formation in the Heishan Coal Mine, Toksun, Xinjiang, were selected as the study objects. Hydrogen peroxide solution immersion experiments were carried out on columnar and powdered coal samples, respectively to measure the permeability of columnar coal samples, the dissolution rate of powdered coal samples and the property parameters of hydrogen peroxide solution. Then, the reaction mechanisms between coal samples and hydrogen peroxide and the mechanisms to improve the seepage capacity of coal reservoirs were analyzed by means of X-ray diffraction (XRD), scanning electron microscope (SEM), infrared spectrum and wetting angle measurement. Finally, the stimulation effect of oxidation was compared with that of acidification. The following research results were obtained. (1) The permeability of coal samples is increased significantly after oxidation to 1.4–3.2 times the original permeability. (2) A large number of micro-fractures and dissolved pores are formed in the coal samples after oxidation, and consequently pore connectivity is improved greatly. Thus, the amount of associative hydroxyl and carboxyl functional groups on the surface of the coal samples increases, and the water wettability on the surface reduces. (3) Organic matters and pyrites are oxidized and consumed easily, and the generated H+and micro-molecular aliphatic acids further dissolve inorganic mineral components. (4) Oxidation also has the advantage of acidification for dissolving inorganic mineral components, so there is a low and controllable probability of generating coal powder. In conclusion, applying strong oxidizers has the potential to become a new technology for coal reservoir stimulation.
机译:物理方法很难刺激储层,通过氧化作用应用强氧化剂来刺激储层可以提高煤层气的采收率。然而,目前,关于煤层气氧化的研究很少,而系统评价氧化对煤储层渗流能力影响的实验研究也很少。本文以新疆托克森黑山煤矿侏罗系西山窑组煤层为研究对象。分别在柱状和粉状煤样品上进行过氧化氢溶液浸没实验,以测量柱状煤样品的渗透性,粉状煤样品的溶解速率和过氧化氢溶液的性能参数。然后,通过X射线衍射(XRD),扫描电子显微镜(SEM),红外光谱和湿润角测量等方法,分析了煤样与过氧化氢之间的反应机理以及提高煤储层渗流能力的机理。最后,将氧化的刺激效果与酸化的效果进行了比较。获得了以下研究结果。 (1)氧化后,煤样品的渗透率显着提高到原始渗透率的1.4–3.2倍。 (2)氧化后的煤样中形成大量的微裂纹和溶孔,从而大大改善了孔连通性。因此,煤样品表面上缔合的羟基和羧基官能团的数量增加,并且表面上的水润湿性降低。 (3)有机物和黄铁矿易于氧化和消耗,生成的H +和小分子脂肪酸进一步溶解了无机矿物成分。 (4)氧化还具有酸化溶解无机矿物成分的优点,因此产生煤粉的可能性低且可控。总之,使用强氧化剂有可能成为增产煤储层的新技术。

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