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NOx emission from incineration of organic hazardous liquid waste containing hexamethylendiamine in fluidized bed

机译:在流化床中焚化含有六甲基己二胺的有机有害液体废物而产生的NOx排放

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Experiments have been conducted to investigate NOx concentration profiles along bed height and influences of temperature and excess air on NOx emission in the range from 700 ℃ to 900 ℃, when waste water containing 5% Hexamethylenediamine incinerated in a bench scale hot fluidized bed. The testing results indicate that the concentration of NO2 is larger than that of NO along bed height except in the freeboard at 900 ℃, where NO, NO2 concentrations are zero. Temperature and excess air play significant role on NOx emission. With increasing in temperature the NOx emission decreases very rapidly in the range from 700 ℃ to 900 ℃. With increasing in excess air, NOx emission increases considerably at 700 ℃, but it is almost independent of excess air at 800 ℃,and at 900 ℃ NOx emission is zero indicating that NH2 from NH2(CH2)6NH2 has strong effect on de-NOx with increasing in temperature and excess air. NOx concentration profiles decrease progressively with bed height because of reduction of NOx by NH2. The mechanism of NOx formation and destruction is presented in the paper.
机译:实验研究了在台式热流化床中焚烧含5%六亚甲基二胺的废水时,沿床高方向NOx浓度分布以及温度和过量空气对700x至900℃范围内NOx排放的影响。试验结果表明,除在900℃的干舷处,NO,NO2的浓度为零外,NO2的浓度沿床高大于NO的浓度。温度和过量空气对NOx排放起重要作用。随着温度的升高,NOx排放在700℃至900℃的范围内迅速降低。随着过量空气的增加,NOx的排放在700℃时会显着增加,但在800℃时它几乎与过量空气无关,并且在900℃时NOx的排放为零,这表明NH2(CH2)6NH2产生的NH2对脱氮有很强的作用随着温度升高和空气过多。由于NH 2还原NO x,NO x浓度分布随床高而逐渐降低。本文介绍了NOx形成和破坏的机理。

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