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A new test rig for studies of degradation of CO2 absorption solvents at process conditions; comparison of test rig results and pilot plant data for degradation of MEA

机译:一种新的试验台,用于在工艺条件下研究CO2吸收溶剂的降解;试验台结果与试验工厂数据进行比较MEA降解

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SINTEF Materials and Chemistry has recently designed an advanced laboratory test rig for studies of solvent degradation. This solvent degradation test rig (SDR) emulates the process conditions observed in an absorber/stripper configuration designed for CO2 capture. Aqueous solvent is degraded by cycling in a combined absorber and stripper setup with realistic temperatures and CO2 loadings of the solvent in addition to a defined synthetic flue gas mixture. A 14 week test campaign with degradation of 30 wt.% 2-efhanolamine (MEA) was performed in the rig. Comparison between group methodology and specific nitrosamine analysis of the solvent showed that 42 % of the nitrosamines were unidentified species. This indicates that many of the MEA degradation products are likely precursors for nitrosamine formation. Two nitrosamines were identified in the solvent; nitrosodiethanolamine (NDELA) and the nitrosamine of the degradation product N-(2-hydroxyethyl)-glycine (HEGly): nitroso-(2-hydroxyethyl)-glycine (NHEGly). 56% of the total nitrosamine was identified as NHEGly, while 2% was NDELA. Nitrosodimethylamine (NDMA) was detected in the absorber gas emission, but was below the quantification limit in the solvent. Results indicate that the degradation of nitrosamines and nitramine in the solvent is highly temperature dependent, and that the levels of total nitrosamines and MEA-nitramine are significantly reduced by elevated stripper temperature. The results show that the SDR results give a realistic picture on the solvent degradation to be expected in a real CO2 capture plant; degradation products formed in the SDR MEA solvent reflects those previously found in pilot plant studies. This demonstrates how the SDR enables bench-scale studies of solvent process degradation previously only available from pilot plant studies. SDR results should provide valuable input to health and environmental risk evaluations for different solvent systems for CO2 capture.
机译:辛特材料和化学最近设计了一个先进的实验室试验台,用于研究溶剂降解。该溶剂劣化试验台(SDR)仿真在设计用于CO2捕获的吸收室/剥离装置中观察到的过程条件。除了定义的合成烟气混合物之外,通过在组合的吸收器中循环和剥离装置和溶剂的剥离装置和CO 2负载,通过旋转溶剂和CO 2的CO 2负载来降解含水溶剂。 14周的测试运动,降解30重量%。在钻机中进行%2-Efhanolamine(MEA)。组方法与溶剂的特异性亚硝胺分析之间的比较表明,42%的亚硝胺是未识别的物种。这表明许多MEA降解产物可能是亚硝胺形成的前体。在溶剂中鉴定出两种亚硝胺;亚硝基二乙醇胺(Ndela)和降解产物N-(2-羟乙基) - 甘氨酸(HEGLY):亚硝基 - (2-羟乙基) - 甘氨酸(NHEGLY)的亚硝胺。将56%的亚硝基胺鉴定为NHEGLY,而2%是Ndela。在吸收剂气体发射中检测亚硝过硫胺甲胺(NDMA),但低于溶剂中的定量极限。结果表明,亚硝胺和硝胺的降解在溶剂中的高度温度依赖性,并且通过升降机温度升高,总亚硝基胺和MEA-硝胺的水平显着降低。结果表明,SDR结果在真正的CO2捕获植物中提供了预期的溶剂劣化的现实图。 SDR MEA溶剂中形成的降解产物反映了先前在试点植物研究中发现的产品。这证明了SDR如何能够在先导植物研究中获得的溶剂过程降解的基准性研究。 SDR结果应为二氧化碳捕获的不同溶剂系统提供有价值的健康和环境风险评估。

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