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Process simulation of impurity impacts on CO_2 fluids flowing in pipelines

机译:杂质对管线中CO_2流体影响的过程模拟

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Captured carbon dioxide flowing in pipelines is impure. The impurities contained in the carbon dioxide fluid impact on the properties of the fluid. The impact of each impurity has not been adequately studied and fully understood. In this study, binary mixtures containing carbon dioxide and one impurity, at the maximum permitted concentration, flowing in pipelines are studied to understand their impact on pipeline performance. A hypothetical 70 km uninsulated pipeline is assumed and simulated using Aspen HYSYS (v.10) and gPROMS (v.5.1.1). The mass flow rate is 2,200,600 kg/h; the internal and external diameters are 0.711 m and 0.785 m. 15 MPa and 9 MPa were assumed as inlet and minimum pressures and 33 degrees C as the inlet temperature, to ensure that the fluid remain in the dense (subcritical or supercritical) phase. Each binary fluid is studied at the maximum allowable concentration and deviations from pure carbon dioxide at the same conditions is determined. These deviations were graded to rank the impurities in order of the degree of impact on each parameter. All impurities had at least one negative impact on carbon dioxide fluid flow. Nitrogen with the highest concentration (10-mol %) had the worst impact on pressure loss (in horizontal pipeline), density, and critical pressure. Hydrogen sulphide (with 1.5-mol %) had the least impact, hardly changing the thermodynamic properties of pure carbon dioxide. (C) 2019 Elsevier Ltd. All rights reserved.
机译:管道中捕获的二氧化碳流动不纯。二氧化碳流体中包含的杂质会影响流体的性能。每种杂质的影响尚未得到充分研究和充分理解。在这项研究中,研究了在管道中流动的,含有二氧化碳和一种杂质的二元混合物,其最大允许浓度是为了了解它们对管道性能的影响。假定并使用Aspen HYSYS(v.10)和gPROMS(v.5.1.1)对假设的70公里非绝缘管道进行了仿真。质量流率为2,200,600 kg / h;内径和外径分别为0.711 m和0.785 m。假设入口压力为15 MPa和9 MPa,最小入口温度为33摄氏度,以确保流体保持在密相(亚临界或超临界)状态。在最大允许浓度下研究每种二元流体,并确定在相同条件下与纯二氧化碳的偏差。将这些偏差分级,以按对每个参数的影响程度的顺序对杂质进行排名。所有杂质对二氧化碳流体流量至少具有一种负面影响。最高浓度(10摩尔%)的氮气对压力损失(水平管道中),密度和临界压力的影响最大。硫化氢(1.5摩尔%)的影响最小,几乎不改变纯二氧化碳的热力学性质。 (C)2019 Elsevier Ltd.保留所有权利。

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