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Aquifer disposal of acid gases: modelling of water-rock reactions for trapping of acid wastes

机译:酸性气体的含水层处置:用于捕集酸性废物的水-岩反应模型

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The pore space of deep saline aquifers in the Alberta (sedimentary) Basin offers a significant volume for waste storage by "hydrodynamic trapping". Furthermore, given the slow regional fluid flow in these deep saline aquifers, ample time exists for waste-water/rock chemical reactions to take place. A geochemical computer model (PATHARC) was used to compute the interaction of industrial waste streams comprising CO2, H2SO4 and H2S with the minerals in typical carbonate and sandstone aquifers from the Alberta Basin. The results support the idea that these acids can be neutralized by such reactions and that new mineral products are formed, such as calcite, siderite, anhydrite/gypsum and pyrrhotite, thereby trapping the CO3, SO4 and S ions that are formed when the acid gases dissolve in the formation water. Siliciclastic aquifers appear to be a better host for "mineral trapping" than carbonate aquifers, especially with regard to CO2. Carbonate aquifers may be more prone to leakage due to high CO2 pressures generated by reaction with H2SO4 and H2S. Even though permeability decreases are expected due to this "mineral trapping", they can be partially controlled so that plugging of the aquifer does not occur. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 45]
机译:艾伯塔(沉积)盆地深层盐水层的孔隙空间通过“流体动力捕集”为废物储存提供了很大的空间。此外,考虑到这些深盐水层中的区域流体缓慢流动,废水/岩石化学反应发生的时间充裕。地球化学计算机模型(PATHARC)用于计算包含CO2,H2SO4和H2S的工业废水与来自艾伯塔盆地的典型碳酸盐和砂岩含水层中的矿物质之间的相互作用。结果支持以下想法:这些酸可通过此类反应中和,并形成新的矿物产品,例如方解石,菱铁矿,硬石膏/石膏和黄铁矿,从而捕获了酸性气体时形成的CO3,SO4和S离子溶于地层水中。硅碳质含水层似乎比碳酸盐含水层更好的“矿物捕集”主体,尤其是在二氧化碳方面。由于与H2SO4和H2S反应生成的高CO2压力,碳酸盐含水层可能更容易泄漏。即使由于这种“矿物捕集”而导致渗透率下降,也可以对其进行部分控制,以使含水层不会发生堵塞。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:45]

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