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首页> 外文期刊>International Journal of Greenhouse Gas Control >Process simulations of NH3 abatement system for large-scale CO2 capture using aqueous ammonia solution
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Process simulations of NH3 abatement system for large-scale CO2 capture using aqueous ammonia solution

机译:使用氨水溶液进行大规模CO2捕获NH3减排系统的过程模拟

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Process simulations of NH3 abatement system for large-scale CO2 capture using aqueous ammonia solution for a 500 MW coal-fired power plant were carried out. For the NH3 abatement system, the lean NH3 solvent was adopted for the absorption of NH3 escaping from the CO2 capture system. Firstly, the equilibrium based model, RadFrac, was used to estimate key operating parameters. Then, the rate based model, RateFrac, was adopted to analyze the effects of different operating parameters on the NH3 absorption and regeneration processes. Under the optimal condition, the flow rate of NH3 slip is 1.687 kg/h and the NH3 concentration in the vent gas is 1.6 ppmv, which both can meet the NH3 emission standards in major countries of the world. If the heat releasing from the condenser of the NH3 regeneration processes is used for the CO2 regeneration, the CO2 regeneration energy will decrease to 3045 kJ/kg CO2. Whereas, if considering the reboiler heat duty in the NH3 regeneration process, the total CO2 regeneration energy of the whole CO2 capture system will increase to 8472 kJ/kg CO2. Besides, the balance evaluation of mass flow rates of gas streams between the CO2 capture system and NH3 abatement system was carried out
机译:进行了使用氨铁溶液水溶液用于500 MW燃煤发电厂的大规模CO2捕获的NH3减排系统的过程模拟。对于NH3减排系统,采用贫NH3溶剂来吸收来自CO 2捕获系统的NH3。首先,使用基于均衡的模型Radfrac来估计关键操作参数。然后,采用基于速率的模型,率率分析了不同操作参数对NH3吸收和再生过程的影响。在最佳条件下,NH 3滑动的流速为1.687千克/小时,排气气体中的NH 3浓度为1.6 ppmV,两者都可以满足世界主要国家的NH3排放标准。如果从NH 3再生过程的冷凝器中释放的热量用于CO 2再生,则CO 2再生能量将降低至3045kJ / kg CO2。然而,如果考虑NH3再生过程中的再沸器热量,则整合CO2捕获系统的总二氧化碳再生能量将增加至8472kJ / kg CO2。此外,进行了CO2捕获系统和NH3减排系统之间的气流质量流量的平衡评估

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