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THE EMISSIONS OF PAHS AND HEAVY METALS FROM CO-COMBUSTION OF PETROCHEMICAL SLUDGE WITH COAL IN CFB INCINERATOR

机译:CFB焚烧炉中煤中石化污泥共燃烧的PAHS和重金属的排放

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The polycyclic aromatic hydrocarbons (PAHs) and heavy metals (Hg, Pb, Ni, Cr, Cu, Zn) emission characteristics in flue gas from co-combustion of petrochemical sludge and coal were investigated in a pilot-scale circulating fluidized bed (CFB) incinerator with a thermal input of 0.2 MW. Experimental results show that when mass ratio of petrochemical sludge/coal increases from 10% to 40%, PAHs, Hg and Zn emissions increase, while Pb and Ni emissions decrease. Mass mixing ratio has no obvious effect on the emissions of Cr and Cu. As combustion temperature increases, PAHs emission decreases at first and then increases, there is an optimum combustion temperature inhibiting PAHs formation, while emissions of Hg, Pb, Cu, Zn increase relatively rapidly. With Ca/S molar ratio increasing, PAHs, Hg, Pb, Ni, and Cu emissions decrease due to adsorption by calcium sorbents. Limestone is effective in adsorbing Pb and Ni, while lime is suitable to adsorb Hg and Cu. However, Ca/S molar ratio doesn't have much influence on the emissions of Cr and Zn. Some combustion parameters are recommended based on stable combustion and low pollutant emission.
机译:在先导循环流化床(CFB)中,研究了从石化污泥和煤的共燃烧中烟气中的多环芳烃(PAH)和重金属(Hg,Pb,Ni,Cr,Cu,Zn)排放特性焚烧炉具有0.2 mW的热输入。实验结果表明,当石化污泥/煤的质量比增加10%至40%,PAH,HG和Zn排放量增加时,Pb和Ni排放减少。质量混合比对Cr和Cu的排放没有明显影响。随着燃烧温度升高,PAHS发射首先降低,然后增加,存在抑制PAH的最佳燃烧温度,而Hg,Pb,Cu,Zn的排放相对较快增加。由于吸附剂吸附,Ca / S摩尔比增加,PAH,Hg,Pb,Ni和Cu排放减少。石灰石在吸附Pb和Ni中是有效的,而石灰适合吸附Hg和Cu。然而,Ca / S摩尔比对Cr和Zn的排放没有太大影响。基于稳定的燃烧和低污染物排放,建议使用一些燃烧参数。

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