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Effect of limestone on the emission of NO during petroleum coke combustion

机译:石灰石对石油焦燃烧过程中NO排放的影响

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In order to investigate the effect of limestone on NO emission during petroleum coke combustion, experiments were conducted in a horizontal fixed-bed reactor connected with an on-line FTIR gas analyzer. Calcium based materials (limestone, CaO and CaSO4) were employed as solid additives, while CO2 and SO2 were mixed with the carrier gas to research their effects on NO emission. The results showed that char-N was the most important source of NO. Char-NO, which was produced by the combustion of char-N was significantly promoted with the addition of limestone. This was mostly caused by the catalytic effect of CaO, which was produced by the decomposition of limestone. To clarify the mechanism, pyrolysis experiments were carried out, and the transformation of fuel-N to gaseous-N and char-N was investigated. The conversion ratio of fuel-N to gaseous-N was promoted to a higher value by the additives, whereas the proportion of char-N slightly decreased. However, most of fuel-N still remained in char regardless of additives. Therefore, it could be concluded that the conversion ratio of char-N to NO obviously increased due to the addition of additives and then resulted in an increase in the overall emission of NO during combustion. The nitrogen species in raw material and chars were analyzed using X-ray photoelectron spectroscopy (XPS). The results showed that the conversion route of fuel-N to char-N during pyrolysis was not obviously affected by limestone, however, it was greatly affected by CaO. More nitrogen was restrained in the form of N-X in chars produced by the co-pyrolysis of petroleum coke and CaO, due to which, the positive effect of CaO on NO emission was weaker than that of the limestone.
机译:为了研究石灰石对石油焦燃烧过程中NO排放的影响,在与在线FTIR气体分析仪连接的卧式固定床反应器中进行了实验。钙基材料(石灰石,CaO和CaSO4)用作固体添加剂,而CO2和SO2与载气混合以研究其对NO排放的影响。结果表明,char-N是最重要的NO来源。通过添加石灰石,可显着促进由char-N燃烧产生的Char-NO。这主要是由CaO的催化作用引起的,而CaO是由石灰石分解产生的。为了阐明机理,进行了热解实验,并研究了燃料-N向气态-N和焦-N的转化。添加剂将燃料-N向气态-N的转化率提高到更高的值,而炭-N的比例则略有下降。但是,无论添加何种添加剂,大多数燃料N仍残留在炭中。因此,可以得出结论,由于添加了添加剂,char-N向NO的转化率明显增加,然后导致燃烧过程中NO的总排放量增加。使用X射线光电子能谱(XPS)分析了原料和焦炭中的氮种类。结果表明,石灰石对热解过程中燃料-N转化为焦炭-N的转化路径影响不明显,而CaO对转化率的影响很大。石油焦和CaO共同热解生成的焦炭中,以N-X形式抑制了更多的氮,因此,CaO对NO排放的积极作用要弱于石灰石。

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