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Effect of oxygenated liquid additives on the urea based SNCR process

机译:含氧液体添加剂对基于尿素的SNCR工艺的影响

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摘要

An experimental investigation was performed to study the effect of oxygenated liquid additives, H_2O_2, C_2H_5OH, C_2H_4(OH)_2 and C_3H_5(OH)_3 on NO_X removal from flue gases by the selective non-catalytic reduction (SNCR) process using urea as a reducing agent. Experiments were performed with a 150 kW pilot scale reactor in which a simulated flue gas was generated by the combustion of methane operating with 6% excess oxygen in flue gases. The desired levels of initial NO_X (500 ppm) were achieved by doping the fuel gas with ammonia. Experiments were performed throughout the temperature range of interest, i.e. from 800 to 1200 ℃ for the investigation of the effects of the process additives on the performance of aqueous urea DeNO_x. With H_2O_2 addition a downward shift of 150 ℃ in the peak reduction temperature from 1130 to 980 ℃ was observed during the experimentation, however, the peak reduction efficiency was reduced from 81 to 63% when no additive was used. The gradual addition of C_2H_5OH up to a molar ratio of 2.0 further impairs the peak NO_x reduction efficiency by reducing it to 50% but this is accompanied by a downward shift of 180 ℃ in the peak reduction temperature. Further exploration using C_2H_4(OH)_2 suggested that a 50% reduction could be attained for all the temperatures higher than 940 ℃. The use of C_3H_5(OH)_3 as a secondary additive has a significant effect on the peak reduction efficiency that decreased to 40% the reductions were achievable at a much lower temperature of 800 ℃ showing a downward shift of 330 ℃.
机译:进行了实验研究,研究了以尿素为原料的选择性非催化还原(SNCR)工艺对含氧液体添加剂H_2O_2,C_2H_5OH,C_2H_4(OH)_2和C_3H_5(OH)_3对烟道气中NO_X去除的影响。还原剂。实验是使用150 kW中试规模反应器进行的,在该反应器中,甲烷燃烧是通过在烟气中含6%过量氧气的情况下燃烧甲烷而产生的。通过用氨掺杂燃料气体来达到所需的初始NO_X(500 ppm)含量。在感兴趣的整个温度范围内(即800至1200℃)进行了实验,以研究加工助剂对尿素DeNO_x水溶液性能的影响。在实验过程中,观察到添加H_2O_2时,峰还原温度从1130下降到980℃,下降了150℃,但是当不使用添加剂时,峰还原效率从81%下降到63%。 C_2H_5OH逐渐增加至2.0的摩尔比会进一步降低NO_x的峰值还原效率,方法是将其降低到50%,但这伴随着峰值还原温度的下降180℃。使用C_2H_4(OH)_2进行的进一步研究表明,对于所有高于940℃的温度,均可降低50%。使用C_3H_5(OH)_3作为辅助添加剂对峰还原效率有显着影响,降低至40%时,在800℃以下的较低温度(330℃向下移动)下可实现还原。

著录项

  • 来源
    《Journal of Environmental Management》 |2009年第11期|3429-3435|共7页
  • 作者单位

    Department of Chemical and Materials Engineering, Pakistan Institute of Engineering and Applied Sciences (PIEAS), P.O. Nilore Islamabad, Pakistan;

    Energy and Resources Research Institute, The University of Leeds, Leeds LS2 9JT, UK;

    Department of Chemical and Materials Engineering, Pakistan Institute of Engineering and Applied Sciences (PIEAS), P.O. Nilore Islamabad, Pakistan;

    Department of Chemical and Materials Engineering, Pakistan Institute of Engineering and Applied Sciences (PIEAS), P.O. Nilore Islamabad, Pakistan;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    SNCR; NO_x; secondary additives; H_2O_2; ethanol; ethylene glycol; glycerol urea; NO_xOUT;

    机译:SNCR;NO_x;次要添加剂H_2O_2;乙醇乙二醇;甘油尿素;NO_xOUT;

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