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Performance evaluation and process simulation for synergetic removal of NO_x, CO_2 and PM using green alkaline solution in a high-gravity rotating packed bed

机译:使用绿色碱性溶液在高重旋转堆积床中使用绿色碱性溶液的协同去除性能评价和过程模拟

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The high-gravity rotating packed bed (HiGee RPB) developed here can simultaneously remove multiple air pollutants using alkaline solution, thus achieving the flue gas deep purification. The electric-arc-furnace reduction slag (EAFRS) leachate was then used as the alkaline absorbent in HiGee RPB for assessing the removal efficiencies of nitrogen oxide (NOx), carbon dioxide (CO2) and particulate matters (PM) from flue gas. The results indicated the changes to the CO2 capture was enhanced by increasing the initial PH value of the alkaline solution. In contrast, this value has no significant influence on NOx removal. The suitable NOx removal efficiency ranged from 90.9% to 97.09% at the liquid-to-gas (L/G) ratio of 0.01 and high gravity factor of 58.9 to 368. The precipitated calcium carbonate gained from carbonation via HiGee process exhibited similar physical properties to commercial products. In addition, 95.9% of PM removal efficiency was achieved at the L/G ratio and high gravity factor of 0.03 and 235.4, respectively. This treatment furthermore demonstrated a high efficiency for PM collection of over 90% and balanced the energy consumption. Based on the result, an Aspen simulation and a preliminary cost-benefit analysis were carried out to develop a mass-balance model for this system and determine the favorable operating conditions.
机译:这里开发的高重力旋转包装床(HIGEE RPB)可以同时使用碱性溶液去除多个空气污染物,从而实现烟道气深纯化。然后将电弧炉还原渣(EAFRS)渗滤液用作HIGEE RPB中的碱吸收剂,用于评估氮气(NOx),二氧化碳(CO2)和颗粒物质(PM)的去除效率从烟道气中的去除效率。结果表明通过增加碱性溶液的初始pH值来提高CO2捕获的变化。相比之下,该值对NOx的去除没有显着影响。合适的NOx去除效率在0.01和高重力因子的液 - 气(L / g)比率下为90.9%至97.09%,高重力因子为58.9至368.通过HIGEE方法的碳酸化中获得的沉淀的碳酸钙表现出类似的物理性质商业产品。此外,在L / g比和高重力因子的达到95.9%的PM去除效率分别为0.03和235.4。此处理还表明了PM收集超过90%的高效率,平衡了能量消耗。基于该结果,对该系统的质量平衡模型进行了ASPEN模拟和初步成本效益分析,并确定了有利的操作条件。

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