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首页> 外文期刊>Aerosol and Air Quality Research >Heat Stable Salt Accumulation and Solvent Degradation in a Pilot-Scale CO2 Capture Process Using Coal Combustion Flue Gas
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Heat Stable Salt Accumulation and Solvent Degradation in a Pilot-Scale CO2 Capture Process Using Coal Combustion Flue Gas

机译:煤烟气在中试捕集二氧化碳过程中的热稳定盐积累和溶剂降解

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Solvent degradation is a major factor in the cost associated with carbon capture using aqueous amine solutions. Heat stable salts (HSS) from oxidative amine degradation and acidic flue gas components, including SO2, NOx and HCl can accumulate in amine solvents and lead to corrosion, extra energy requirements and reduced capture efficiency. Accurate and reliable quantitation of HSS concentration is essential to monitor solvent degradation and corrosion potential inside the system. Two separate amine solvents were tested in a 0.1 MWth carbon capture pilot plant. 30% Monoethanolamine (MEA) was used as a baseline solvent and compared to a developed amine solvent, CAER-B2. Six HSS were identified in each solvent and the accumulation rates were determined. The observed HSS build-up was similar in magnitude to other published amine based CO2 capture plant data. The 30% MEA solvent accumulates HSS at a higher rate (48 ppm/hr vs. 22 ppm/hr) as the CAER-B2 which can be attributed to higher input SO2 levels during the solvent test campaign. Corrosion benchmark levels of HSS were exceeded for CAER-B2 and 30% MEA within a few days of normal operation.
机译:溶剂降解是与使用胺水溶液进行碳捕集相关的成本的主要因素。氧化胺降解和酸性烟道气成分(包括SO2,NOx和HCl)产生的热稳定盐(HSS)会在胺溶剂中积累,并导致腐蚀,额外的能源需求并降低捕集效率。 HSS浓度的准确和可靠定量对于监控系统内部的溶剂降解和腐蚀潜能至关重要。在0.1 MWth的碳捕集中试装置中测试了两种单独的胺溶剂。 30%单乙醇胺(MEA)用作基准溶剂,并与发达的胺溶剂CAER-B2进行了比较。在每种溶剂中鉴定出六个HSS,并确定了累积速率。观察到的HSS积累在强度上与其他已发布的基于胺的CO2捕集工厂数据相似。 30%MEA溶剂作为CAER-B2以较高的速率(48 ppm / hr相对于22 ppm / hr)累积HSS,这可以归因于溶剂测试过程中较高的输入SO2水平。在正常运行的几天内,CAER-B2和30%MEA的HSS腐蚀基准水平被超过。

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