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Influence of operating parameters on performance of SO2 absorption in fulvic acid solution

机译:操作参数对黄腐酸溶液中SO 2吸收性能的影响

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A novel process of flue gas desulfurization by aqueous fulvic acid (FA) solution with acid-base buffering capacity was developed. Experiments were carried out to investigate the influence of operating parameters such as the FA concentration, pH, temperature, gas flow rate, fly ash, O-2, SO2 inlet concentration, CO2 and NO2 on SO2 absorption efficiency and Duration Time of High Efficiency (DTHE, the time of the SO2 absorption efficiency above 95%) in a lab-scale bubbling reactor. The results show high FA concentration has more absorption capacity for SO2, and the optimum concentration of FA solution is 0.08 g mL(-1), at which point the absorption efficiency is above 98%. The inlet SO2 concentration has little influence on absorption efficiency, but DTHE reduces with increasing inlet SO2 concentration. O-2 has a little effect on absorption efficiency. The SO2 absorption efficiency is not affected by pH change in the range from 5.5 to 3.3, and maintained above 97.4%. Fly ash can improve SO2 absorption efficiency and DTHE. NO2 can accelerate the oxidation of bisulfite to sulfate and promote SO2 absorption. CO2 hardly influences on SO2 absorption efficiency, but the SO2 absorption capacity decreases with the increasing of CO2 partial pressure. Furthermore, the thermal stability and regenerability of FA were also evaluated by TG-DTG and XRD, respectively. The results demonstrate that FA with stable performances is a promising regenerative absorbent for the removal of SO2. (C) 2015 Elsevier B.V. All rights reserved.
机译:开发了一种具有酸碱缓冲能力的黄腐酸(FA)水溶液烟气脱硫新工艺。进行实验以研究诸如FA浓度,pH,温度,气体流速,粉煤灰,O-2,SO2入口浓度,CO2和NO2等操作参数对SO2吸收效率和高效持续时间的影响( DTHE,在实验室规模的鼓泡反应器中,SO2吸收效率超过95%的时间。结果表明,高的FA浓度对SO2的吸收能力更大,FA溶液的最佳浓度为0.08 g mL(-1),此时的吸收效率高于98%。入口SO2浓度对吸收效率影响很小,但是DTHE随着入口SO2浓度的增加而降低。 O-2对吸收效率的影响很小。 pH在5.5到3.3之间变化不会影响SO2的吸收效率,并保持在97.4%以上。粉煤灰可以提高二氧化硫的吸收效率和DTHE。 NO2可以加速亚硫酸氢盐氧化为硫酸盐并促进SO2的吸收。 CO 2几乎不影响SO 2的吸收效率,但是随着CO 2分压的增加,SO 2的吸收能力降低。此外,还分别通过TG-DTG和XRD评估了FA的热稳定性和可再生性。结果表明,具有稳定性能的FA是用于去除SO2的有希望的再生吸收剂。 (C)2015 Elsevier B.V.保留所有权利。

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