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Thermal Degradation of Ethanolamine in CO2 Capture with SO2

机译:用SO2在CO2捕获中的乙醇胺热降解

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Amine degradation in the absorption / stripping process is one of the concerns in this technology.SO2 is reported to promote amine degradation in both bench scale and pilot scale. This work investigates the impact of SO2 on thermal degradation of MEA by preloading additives,which are Na2SO3,SO2 and H2SO4.7 m (mol / kg H2O) MEA with 0.4 CO2 loading (mol CO2/mol MEA) at 135°C is the baseline condition.Initial sulfer concentration is 0.4 m in the experiments with additives. The experiment temperature varied from 120°C to 150°C.Neither sulfite nor sulfate has significant impact on MEA degradation rate in thermal condition. There is no different cation product in the samples with additives compared to the baseline experiment. The main process of MEA thermal degradation is still carbamate polymerizing.Ammonium was induced by sulfite. The main organic acid product is formate for all the experiment conditions,while there are new anion products with sulfite.Formate formation was promoted by H2SO4.Ammonium and formate formation were promoted at higher temperature.
机译:在吸收/汽提过程中的胺降解是该技术中的缺点之一。据报道,促进两条板凳规模和试验规模的胺降解。这项工作研究了SO2通过预加载添加剂对MEA热降解的影响,所述添加剂是Na 2 SO 3,SO2和H2SO4.7M(Mol / kg H 2 O)Mea,在135℃下为0.4 CO 2负载(Mol CO 2 / Mol Mea)是基线条件。在添加剂的实验中,血管浓度为0.4μm。实验温度从120℃变化至150℃。亚硫酸盐也不会产生显着影响热量条件下的MEA降解速率。与基线实验相比,样品中没有不同的阳离子产品。 MEA热降解的主要过程仍然是氨基甲酸酯聚合。亚铵由亚硫酸钠诱导。对于所有实验条件,主要有机酸产物是甲酸盐,而存在新的阴离子产物具有亚硫酸盐。通过H 2 SO 4促进形成的形成形成,并在较高温度下促进甲酸酯形成。

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