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Combustion of electronic wastes using a drop tube furnace

机译:使用落管炉燃烧电子废物

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High temperature combustion is a key during the pyrometallurgical recycling for electronic wastes. Former researches relating to thermal treatment concentrated on thermal decomposition during electronic wastes pyrolysis and oxidation, using e.g. thermogravimetric analysis (TGA) or lab-scale batch-feeding furnace. In the present research, a bench-scale incineration system was developed to study the combustion of electronic wastes and the emission characteristics. The system features a continuously-fed drop tube furnace. By using it, the combustion proceeds under comparable conditions and the emitted flue gas is steady & uniform, the thermodynamic equilibrium approach for conversions of inorganic halogen could be investigated. It also equips with a cooling & sampling unit for investigating the emission of post-combustion area. The effects of operating conditions on the completeness of combustion and the emission of inorganic Br for waste printed circuit boards were investigated systematically by using this furnace. Under the proposed conditions, the combustion is quiet complete and more than 99.89% organobrominated compounds contained in raw materials are destroyed and convert to HBr & Br2 in flue gas. The two forms of inorganic bromine seem reach thermodynamic equilibrium within 0.25 s. Further experiments could provide the datum for analyzing the combustion performance, the emission characteristics of organic pollutants and the mechanism of chlorinated dioxins (PCDD/Fs) & brominated dioxins (PBDD/Fs) formation by fly ash catalyzed de novo synthesis.
机译:在电子废物的火法冶金回收过程中,高温燃烧是关键。与热处理有关的以前的研究集中在电子废物热解和氧化过程中的热分解上,例如使用热重分析(TGA)或实验室规模的分批进料炉。在本研究中,开发了台式规模的焚烧系统,以研究电子废物的燃烧和排放特性。该系统具有连续供料的滴管炉。通过使用它,燃烧在可比的条件下进行,并且排放的烟气稳定且均匀,可以研究用于无机卤素转化的热力学平衡方法。它还配备了一个冷却和采样装置,用于研究燃烧后区域的排放。使用该炉系统地研究了操作条件对废弃印刷电路板燃烧的完整性和无机Br排放的影响。在建议的条件下,燃烧完全安静,原料中超过99.89%的有机溴化化合物被破坏,并在烟道气中转化为HBr和Br 2 。两种形式的无机溴似乎在0.25 s内达到热力学平衡。进一步的实验可以为分析燃烧性能,有机污染物的排放特性以及粉煤灰从头催化合成氯二恶英(PCDD / Fs)和溴化二恶英(PBDD / Fs)的机理提供依据。

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