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首页> 外文期刊>Separation and Purification Technology >Recovery of high-purity NO2 and SO2 products from iron-ore sintering flue gas by distillation: process design, optimization and analysis
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Recovery of high-purity NO2 and SO2 products from iron-ore sintering flue gas by distillation: process design, optimization and analysis

机译:通过蒸馏从铁矿烧结烟气中回收高纯度NO2和SO2产品:工艺设计,优化和分析

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摘要

High-purity NO2 and SO2 have significant economic values and are widely used in many fields. The large amounts of NO2 and SO2 in industrial flue gases are worthy of recovery for environmental protection and economic benefits. In this work, a dual-column distillation separation process was proposed to further separate and upgrade NO2 and SO2 following a flue gas adsorption capture process. The feasibility of distillation separation of NO2/SO2 from the desorbed gas, and the advantage of liquid-phase feeding way over gas-phase counterpart in terms of lower energy consumption (1286.39 kW) were demonstrated. Key process parameters such as the number of total stages, the feed stage number, the mole flow rate at bottom of column, the reflux ratio and operating pressure for the two columns (15, 6, 16.66 kmol/h, 0.16, 4 bar; 21, 10, 4.43 kmol/h, 0.50, 1 bar) were determined. Heat and mass transfers along the column height as well as the process robustness against feed composition fluctuation indicate its applicability for practical operation and adaptation to industrial needs. An economic analysis shows a significant annual revenue of 14,333.52 thousand USD based on high-purity (>99.5%) SO2 and NO2 products recovered from a typical scale (similar to 1000,000 m(3)/h) of iron-ore sintering flue gas, not only offsetting the total operating cost of the entire adsorption capture-distillation recovery process but also generating net profit.
机译:高纯度NO2和SO2具有重要的经济价值,广泛应用于许多领域。工业烟气中大量的NO2和SO2是值得回收利用的环保和经济效益。在这项工作中,提出了一种双塔蒸馏分离工艺,以进一步分离和升级烟气吸附捕获工艺后的NO2和SO2。证明了从解吸气体中蒸馏分离NO2/SO2的可行性,以及液相进料方式在降低能耗(1286.39 kW)方面优于气相进料方式。确定了两个塔(15,6,16.66 kmol/h,0.16,4 bar;21,10,4.43 kmol/h,0.50,1 bar)的关键工艺参数,如总级数、进料级数、塔底摩尔流量、回流比和操作压力。沿塔高的热量和质量传递以及工艺对进料成分波动的鲁棒性表明其适用于实际操作并适应工业需要。经济分析显示,基于从典型规模(类似于1000000 m(3)/h)的铁矿石烧结烟气中回收的高纯度(>99.5%)SO2和NO2产品,年收入为1433352 000美元,不仅抵消了整个吸附捕获蒸馏回收过程的总运营成本,还产生了净利润。

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