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首页> 外文期刊>Current Science: A Fortnightly Journal of Research >Low-high temperature flue gas direct injection in south African bituminous and anthracite coals: sorption capacity assessment
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Low-high temperature flue gas direct injection in south African bituminous and anthracite coals: sorption capacity assessment

机译:低温烟气直接注射南非沥青和无烟煤煤:吸附能力评估

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Numerous studies have been carried out recently on the sequestration of carbon dioxide (CO2), a greenhouse gas, produced due to human activities. Consequently, storage of CO2 in storage sites, such as unmineable coal seams, has been identified as one of the promising options with the advantage of recovering coal-bed methane (CH4). However, CO2 injected into coal seams contains additional gases that may reduce storage capacity, cause changes in sorption behaviour and physicochemical properties of coal. This research was aimed at investigating the sorption behaviour of three South African coals (sorbents) upon pure CO2 and flue gas (sorbates) sorption. Measurements were conducted on 10 g samples with a grain size &2 mm. A synthetic industrial flue gas containing 12% CO2, 5.5% O-2, 82% N-2, 0.38% SO2 and 0.12% NO2 was used in the study. Sorption isotherms were measured at a temperature ranging from 30 to 60 degrees C and pressures up to 9 MPa using a high-pressure CO2 volumetric adsorption system (HPCVAS). Sorption of CO2 by coal was highly reduced in the presence of additional gases due to competition for sorption sites. The reduction in CO2 (in flue gas) sorption capacity of coal was up to 63% compared to sorption of pure CO2.
机译:最近在二氧化碳(CO2)的封存中进行了许多研究,这是由于人类活动产生的温室气体。因此,已经鉴定为储存部位(例如未占用的煤层)在储存部位中的储存作为具有回收煤层甲烷(CH4)的优势的有前途选项之一。然而,注入煤层的二氧化碳含有可能降低储存能力的额外气体,导致煤的吸附行为和物理化学性能变化。该研究旨在研究三个南非煤(吸附剂)对纯二氧化碳和烟气(山梨酸盐)吸附的吸附行为。在10g样品上进行测量,具有晶粒尺寸和amp; 2 mm。在研究中使用含有12%CO 2,5.5%O-2,82%N-2,0.38%SO2和0.12%NO 2的合成工业烟道气。吸附等温线在30至60℃的温度下测量,并使用高压CO 2体积吸附系统(HPCVA)压力至9MPa。由于吸附位点的竞争,煤通过煤的含量吸附了CO2的吸附。与纯二氧化碳的吸附相比,煤的二氧化碳(烟气)吸附能力的减少高达63%。

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