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The Investigation of Reducing PAHs Emission from Coal Pyrolysis by Gaseous Catalytic Cracking

机译:气态催化裂化煤热解减少PAHS排放的调查

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The catalytic cracking method of PAHs for the pyrolysis gaseous products is proposed to control their pollution to the environment. In this study, the Py-GC-MS is used to investigate in situ the catalytic effect of CaO and Fe2O3on the 16 PAHs from Pingshuo coal pyrolysis under different catalytic temperatures and catalyst particle sizes. The results demonstrate that Fe2O3is effective than that of CaO for catalytic cracking of 16 PAHs and that their catalytic temperature corresponding to the maximum PAHs cracking rates is different. The PAHs cracking rate is up to 60.59% for Fe2O3at 600°C and is 52.88% at 700°C for CaO. The catalytic temperature and particle size of the catalysts have a significant effect on PAHs cracking rate and CaO will lose the capability of decreasing 16 PAHs when the temperature is higher than 900°C. The possible cracking process of 16 PAHs is deduced by elaborately analyzing the cracking effect of the two catalysts on 16 different species of PAHs.
机译:提出了热解气态产物的PAHS催化裂化方法,以控制其对环境的污染。在该研究中,Py-GC-MS用于研究CaO和Fe2O3在不同催化温度和催化剂颗粒尺寸下的平面煤热解16pahs的催化作用。结果表明,Fe2O3的催化裂化为16pah的催化裂化,并且它们对应于最大PAHs开裂速率的催化温度是不同的。 PAHS开裂速率为FE2O3AT 600°C的速度高达60.59%,为约700°C的52.88%用于CAO。催化剂的催化温度和粒度对PAHS开裂速率显着影响,CAO将在温度高于900℃时失去减少16pah的能力。通过精心分析了16种不同物种PAHs的两种催化剂的开裂效果来推导出16pAh的可能开裂过程。

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