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The influence of viscoelastic surfactant fracturing fluids on gas desorption in soft seams

机译:粘弹性表面活性剂压裂液对软煤层瓦斯脱附的影响

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Hydraulic fracturing is an effective method of increasing the permeability of coal seams, which has gradually come into use in underground coal mines. Fracturing fluid is a key factor affecting the improvement. In this study, the way in which viscoelastic surfactant fracturing fluids affect gas desorption in soft seams was analyzed using the zeta potential and scanning electron microscope (SEM)-based methods. The results obtained with the zeta potential method indicated that due to the components of viscoelastic surfactant fracturing fluids, the potential at the coal surface jumped from -16.3 mV to 48 mV, the interaction energy between the fracturing fluid and the coal surface increased, the adsorption potential of the gas decreased and gas desorption increased. The SEM results demonstrated that the number of gas transport channels increased due to the effective dissolution of cement in the acidic viscoelastic surfactant fracturing solution. The cumulative pore volume of the coal samples processed with viscoelastic surfactant fracturing fluids was 0.001 cm(3)/g, which was 1.8 times the cumulative pore volume of coal samples processed with water. The porosity and connectivity of the coal pores both increased, which was beneficial to gas desorption. Comparative experiments using water and viscoelastic surfactant fracturing fluids were conducted in underground coal mines. The results demonstrated that the amount of gas extracted increased by 26.1% when viscoelastic surfactant fracturing fluids were used. Gas desorption in soft seams was promoted by viscoelastic surfactant fracturing fluids. The new data reported in this study can be used to optimize the use of fluids for underground hydraulic fracturing in Chinese coal mines. (C) 2015 Elsevier B.V. All rights reserved.
机译:水力压裂是增加煤层渗透性的有效方法,这种方法已逐渐应用于地下煤矿。压裂液是影响改进的关键因素。在这项研究中,使用zeta电位和基于扫描电子显微镜(SEM)的方法分析了粘弹性表面活性剂压裂液影响软煤层中气体解吸的方式。用ζ电势法得到的结果表明,由于粘弹性表面活性剂压裂液的组成,煤层表面的电势从-16.3 mV跃升至48 mV,压裂液与煤层之间的相互作用能增加,吸附气体电势降低,气体解吸增加。 SEM结果表明,由于水泥在酸性粘弹性表面活性剂压裂液中的有效溶解,输气通道数量增加。用粘弹性表面活性剂压裂液处理的煤样品的累积孔体积为0.001 cm(3)/ g,是用水处理的煤样品的累积孔体积的1.8倍。煤孔的孔隙度和连通性均增加,这有利于气体的解吸。在地下煤矿中使用水和粘弹性表面活性剂压裂液进行了对比实验。结果表明,当使用粘弹性表面活性剂压裂液时,抽出的气体量增加了26.1%。粘弹性表面活性剂压裂液促进了软煤层的瓦斯解吸。这项研究中报告的新数据可用于优化对中国煤矿地下水力压裂使用的流体。 (C)2015 Elsevier B.V.保留所有权利。

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