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An experimental and modeling study on incipient hydrate-forming conditions for ternary guests of carbon dioxide, nitrogen and sulfur dioxide

机译:二氧化碳,氮和二氧化硫型胎儿初期客人初期水合物成型条件的实验与建模研究

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摘要

In carbon dioxide capture and sequestration (CCS) processes, captured CO2may encounter conditions of hydrate formation due to the presence of water. For stable, long-term operation of CCS processes, hydrate-phase equilibrium data are essential. Captured CO2from combustion of fossil fuel may include other impurities such as N2and SO2. Phase equilibria including a single impurity (N2or SO2) have been reported by other researchers, but no experimental observations have been obtained for ternary guest systems. In this work, the incipient hydrate-forming temperatures for a binary guest of CO2and N2and a ternary guest of CO2, N2and SO2were experimentally measured at 2.0–3.5?MPa. An effect of the ratio between guest components and water was observed. The experimental results were compared with calculations using an equation of state based on a hydrogen-bonding nonrandom lattice fluid (NLF-HB) combined with the van der Waals-Platteeuw model. The model predictions were in good agreement with experimental data with an overall average deviation of 2.6%.
机译:在二氧化碳捕获和封存(CCS)过程中,由于水的存在,捕获的CO2May遇到水合物形成的条件。对于CCS工艺的稳定,长期运行,水合物相平衡数据至关重要。从化石燃料的燃烧中捕获的CO2可包括其他杂质,例如N2和SO2。其他研究人员报告了包括单一杂质(N2OR SO2)的相平衡,但没有针对三元客房系统获得实验观察。在这项工作中,CO2的二元客典的初始水合物形成温度为CO2的三元客人,N2和SO2WERE在2.0-3.5℃下测量。观察到客体组分和水之间的比例的效果。将实验结果与使用基于氢键非randorm晶格液(NLF-HB)的等式的计算进行了比较,与Van der Waals-Platteeuw模型相结合。模型预测与实验数据吻合良好,总平均偏差为2.6%。

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