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A review of the protection strategies against internal corrosion for the safe transport of supercritical CO2 via steel pipelines for CCS purposes

机译:CCS目的钢水管道安全运输超临界二氧化碳安全运输保护策略

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摘要

The transport of carbon dioxide (CO2) from its source to a storage site is a key component of the carbon capture and storage (CCS) process. CO2 transportation by steel pipelines presents a durability risk in the form of internal corrosion damage from supercritical or liquid CO2 transmission. This risk is due to the formation of carbonic acid as a result of any H2O presence, and in situ speciation of acids such as sulphurous (H2SO3), sulfuric (H2SO4), hydrochloric (HCl), and nitric acids (HNO3) due to the presence of impurities. This review paper aims to present three key potential protection strategies to mitigate or reduce the threat of corrosion damage for reliable and potentially cost-effective transport of CO2. This includes review of (a) relevant corrosion inhibitors, (b) corrosion resistant alloys (CRAs) for CO2 transport pipeline, and (c) the role and physical properties of a protective iron carbonate layer (FeCO3)
机译:将二氧化碳(CO2)从其源传输到储存部位是碳捕获和储存(CCS)过程的关键组成部分。 二氧化碳流水线的二氧化碳运输呈现出超临界或液体二氧化碳传输的内部腐蚀形式的耐用性风险。 由于任何H 2 O存在的结果,这种风险是由于碳酸形成,并且由于含硫(H2SO 3),硫酸(H2SO 4),盐酸(HCl)和硝酸(HNO3)的原位形态。 杂质的存在。 本综述旨在提出三项关键潜在的保护策略,以减轻或减少腐蚀损坏的威胁,以便可靠,潜在的成本效益的二氧化碳运输。 这包括对(a)相关的腐蚀抑制剂,(b)CO 2运输管道的耐腐蚀合金(CRAs)的审查,以及(c)保护碳酸碳酸盐层(FECO3)的作用和物理性质

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