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Co-processing of the MSWI flue gas in a lab-scale coal-fired drop-tube furnace

机译:实验室燃烧滴管炉中的MSWI烟气的共同处理

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Coal-fired power plants are characterized by high combustion temperature and well-equipped air pollution control devices. The trace organic pollutants in the municipal solid waste incineration (MSWI) flue gas would be completely destroyed if the MSWI flue gas was injected into the high temperature area of a coal-fired boiler. In this study, the emission characteristics of common gas pollutants, heavy metals, and dibenzo-p-dioxins and dibenzofurans (PCDD/Fs) in both flue gas and bottom ash when the MSWI flue gas was injected into a lab-scale coal-fired drop-tube furnace were investigated. After co-processing, the concentrations of NOx, SO2, CO, and all heavy metals in the flue gas emitted from the coal-fired drop-tube furnace did not change a lot. However, the concentration of HCl in the flue gas from drop-tube furnace increased after coupling the MSWI flue gas. Moreover, the I-TEQ values of the PCDD/Fs in the flue gas and bottom ash after coupling the MSWI flue gas were 0.037 ng I-TEQ/Nm(3)and 0.63 ng I-TEQ/g, respectively. The main formation pathways of PCDD/Fs in the flue gas of drop-tube furnace were suggested to be de novo synthesis and precursor synthesis. Furthermore, the effects of oxygen content and temperature on the formation of PCDD/Fs were also studied. The reduction efficiencies of the total amount of PCDD/Fs in the flue gas from the co-processing system were more than 60%, and even reached 90%. Therefore, co-processing of the MSWI flue gas in coal-fired power plants might be an environmentally friendly technology.
机译:燃煤发电厂的特点是高燃烧温度和装备精良的空气污染控制装置。如果将MSWI烟道气注入燃煤锅炉的高温面积,则在市固体废物焚烧(MSWI)烟道气中的痕量有机污染物将被完全破坏。在本研究中,当MSWI烟道气注入实验室燃烧的实验室燃烧时,普通气体污染物,重金属和二苯并-P-二恶英和二苯并呋喃(PCDD / FS)的排放特性和二苯并呋喃(PCDD / FS)研究了滴管炉。在共处理之后,从燃煤滴管炉发出的烟道气中NOx,SO2,CO和所有重金属的浓度没有变化。然而,在耦合MSWI烟道气后,来自滴管炉的烟道气中的HCl浓度增加。此外,在偶联MSWI烟道气后烟道气和底灰中PCDD / F的I-TEQ值分别为0.037ng I-TEQ / NM(3)和0.63ng I-TEQ / g。提出了滴管炉烟气中PCDD / FS的主要形成途径,是Novo合成和前体合成。此外,还研究了氧含量和温度对PCDD / FS形成的影响。来自共处理系统中烟气中PCDD / FS总量的减少效率超过60%,甚至达到90%。因此,燃煤发电厂中的MSWI烟气的共处理可能是一种环保技术。

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