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Evaluation of amine-blend solvent systems for CO2 post-combustion capture applications

机译:CO2后燃烧捕获应用胺 - 混合溶剂系统的评价

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This work evaluates amine-blend solvent systems for CO2 post-combustion capture applications for a 600 MWe conventional coal-fired power plant. The equilibrium-based Aspen Plus~R absorption/desorption simulation tool was used for this evaluation. The total amine blends concentration was kept at the value of 30wt% for all different systems. Monoethanolamine (MEA) and diethanolamine (DEA) of weight variation of 3, 5, 10 and 15% are blended with 2-amino-2-methylpropanol (AMP), and methyldiethanolamine (MDEA). Fixed cross heat exchanger approach temperature of 10°C and stripper bottom temperature of 120°C are used as design specifications. These design specifications are used to screen each blend without CO2 loading through sensitivity analysis. The AMP with 3, 5, 10 and 15wt% blended DEA (the activator) was found to require lesser reboiler duty in comparison with 30wt% MEA, with lowest value of 3.17GJ_(th)/tonCO2 for 5wt% DEA activation. The promising four blends are further optimized using varying CO2 loadings. The blend of 5wt% DEA and 25wt% AMP with lean loading of 0.07 mol_(CO2)/mol_(blend) requires the lowest reboiler duty of 3.03GJth/ton-CO2 and lowest recirculation rate of 14.882m~3/ton. Absorber temperature profiles indicate temperature changes depend significantly on the lean loading. Stripper temperature profile shows that temperature swing is pronounced at the bottom, suggesting that CO2 desorption takes place more at the lower stages.
机译:这项工作评估了用于600 MWE常规燃煤发电厂的CO 2后燃烧捕获应用的胺 - 混合溶剂系统。使用平衡的Aspen Plus〜R吸收/解吸模拟工具用于该评估。所有不同系统的总胺共混物浓度保持在30wt%的值。将3,5,10和15%重量变化的单乙醇胺(MEA)和二乙醇胺(DEA)与2-氨基-2-甲基丙醇(AMP)和甲基二乙醇胺(MDEA)共混。固定交叉热交换器接近温度为10°C和脱衣钳底部温度120°C用作设计规格。这些设计规范用于通过灵敏度分析筛选每个混合物而无需CO2加载。发现具有3,5,10和15wt%混合的DEA(活化剂)的AMP,与30wt%的MEA相比,较低的再沸器占状因子,最低值为3.17gJ_(TH)/ TYCO2,用于5wt%DEA活化。有希望的四种共混物使用不同的CO 2负载进一步优化。 5wt%dea和25wt%放大器的混合物,贫载荷为0.07mol_(co2)/ mol_(混合物)需要3.03g焦/吨-CO2的最低再沸器占性能,最低再循环率为14.882m〜3 /吨。吸收体温度曲线表示温度变化显着依赖于瘦载荷。剥离温度分布表明,温度摆动在底部发音,表明CO2解吸更加阶段。

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