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Influence of SO2 on CO2 storage for CCS technology: Evaluation of CO2/SO2 co-capture

机译:CCS技术中SO2对CO2储存的影响:CO2 / SO2共捕获的评估

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In this work, we determined the influence of SO2 as an impurity in anthropogenic CO2 on carbon capture and storage (CCS) technology. We evaluated the impact on selected injection and storage parameters and the Joule Thomson coefficient to assess the safety of long-term geological storage of CO2. For this purpose, we obtained new pressure-density-temperature-composition, vapor-liquid-equilibrium, and pressure-speed of sound-temperature-composition experimental data for CO2-rich mixtures containing SO2. To increase the general understanding of the impact of SO2, the compositions cover possible co-capture mixtures, SO2-enriched mixtures, and mixtures similar to industrial emissions. Temperatures and pressures were based on relevant geological storage site values. Our experimental results were used to validate the EOS-CG and PC-SAFT equations of state (EoSs) for CO2 + SO2 under the studied CCS conditions. On the understanding that the chemical reactivity effects due to SO2 have not been considered, we concluded that the presence of SO2 is profitable in most of the studied aspects, especially in the case of shallow reservoirs, and that CO2/SO2 co-capture may be considered as an alternative approach to reduce the costs of CO2 purification. Based on the assessment of the impact of 5 mol% SO2 in the injected fluid in seven saline aquifers, we determined that the reservoirs that would receive the most benefit were Sleipner, Nagaoka and Frio.
机译:在这项工作中,我们确定了人为二氧化碳中的杂质SO2对碳捕集与封存(CCS)技术的影响。我们评估了对所选注入和储存参数以及焦耳汤姆森系数的影响,以评估长期地质封存二氧化碳的安全性。为此,我们获得了含有SO2的富含CO2的混合物的新的压力密度-温度组成,气液平衡和声温组成的压力速度实验数据。为了增加对SO2影响的一般理解,该组合物涵盖了可能的共捕集混合物,富含SO2的混合物以及类似于工业排放的混合物。温度和压力基于相关的地质储藏地点的价值。我们的实验结果被用来验证在研究的CCS条件下CO2 + SO2的EOS-CG和PC-SAFT状态方程(EoSs)。基于没有考虑到SO2引起的化学反应性影响的认识,我们得出结论,在大多数研究方面,特别是在浅层油藏的情况下,SO2的存在是有利的,并且可以将CO2 / SO2共捕获被认为是降低二氧化碳净化成本的替代方法。基于对7个盐水层中注入流体中5 mol%SO2的影响的评估,我们确定将获得最大收益的储层是Sleipner,Nagaoka和Frio。

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