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Review of modelling and simulation strategies for evaluating corrosive behavior of aqueous amine systems for CO2 capture

机译:CO2捕获评价氧化胺系统腐蚀行为的建模与仿真策略述评

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摘要

Corrosion is one of the critical problems for process operations and plant life. Amine-based post-combustion CO2 capture systems are known to be corrosive. This is because of the absorption of CO2 by aqueous amine solution, which makes the system acidic and generates oxidizing agents through ionization leading to corrosion. Corrosion increases with CO2 loading, process temperature, presence of oxygen (O-2), occurrence of sulfur compounds, low pH, velocity of solution and formation of some degradation products. Conducting experimental investigations to determine the rate of corrosion at various parts of process plant under a wide range of operating parameters is difficult and costly. Mathematical models and simulations play an important role in estimating the rate of corrosion under wide range of operating parameters for such systems. This study highlights the process of corrosion for amine-based CO2 capture systems and development of corrosion models with critical analyses on their applications. Study also highlights the outlook of models and simulations.
机译:腐蚀是过程操作和植物寿命的关键问题之一。已知基于胺的燃烧后CO2捕获系统是腐蚀性的。这是因为通过胺溶液吸收CO2,这使得系统酸性并通过导致腐蚀的电离产生氧化剂。腐蚀随着CO2负载,工艺温度,氧气(O-2)的存在,硫化合物的发生,低pH,溶液速度以及形成一些降解产物的形成。进行实验研究,以确定在各种操作参数下处理厂各地的腐蚀速率是困难的且昂贵的。数学模型和仿真在估计这种系统的广泛操作参数下的腐蚀速率方面发挥着重要作用。本研究突出了胺类二氧化碳捕获系统的腐蚀过程以及腐蚀模型的开发,并在其应用上进行了危急分析。研究还突出了模型和模拟的展望。

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