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Thermochemical Formation of Polybrominated Dibenzo-p-Dioxins and Dibenzofurans Mediated by Secondary Copper Smelter Fly Ash, and Implications for Emission Reduction

机译:二次铜冶炼厂粉煤灰介导的多溴代二苯并二恶英和二苯并呋喃的热化学形成及其对减排的意义

摘要

Heterogeneous reactions mediated by fly ash are important to polychlorinated dibenzo-p-dioxin and dibenzofuran (PCDD/Fs) formation. However, the formation of polybrominated dibenzo-p-dioxins and dibenzofurans (PBDD/Fs) through heterogeneous reactions is not yet well understood. Experiments were performed to investigate the thermochemical formation of PBDD/Fs at 150-450 degrees C through heterogeneous reactions on fly ash from a secondary copper smelter. The maximum PBDD/F concentration was 325 times higher than the initial PBDD/F concentration in the fly ash. The PBDD/F concentration after the experiment at 150 degrees C was five times higher than the initial concentration. PBDD/Fs have not previously been found to form at such a low temperature. Secondary-copper-smelter fly ash clearly promoted PBDD/F formation, and this conclusion was supported by the low activation energies that were found in Arrhenius's law calculations. Thermochemical formation of PBDD/Fs mediated by fly ash deposited in industrial facilities could explain "memory effects" that have been found for PCDD/Fs and similar compounds released from industrial facilities. Abundant polybrominated diphenyl ethers (PBDEs) that were formed through fly ash-mediated reactions could be important precursors for PBDD/Fs also formed through fly ash-mediated reactions. The amounts of PBDEs that formed through fly ash-mediated reactions suggested that secondary copper smelters could be important sources of reformed PBDEs.
机译:飞灰介导的多相反应对于多氯二苯并-对-二恶英和二苯并呋喃(PCDD / Fs)的形成很重要。然而,通过异质反应形成多溴化二苯并-对-二恶英和二苯并呋喃(PBDD / Fs)的方法尚未广为人知。进行实验以研究通过二次铜冶炼厂的粉煤灰的异质反应在150-450摄氏度下PBDD / Fs的热化学形成。最高PBDD / F浓度比粉煤灰中的初始PBDD / F浓度高325倍。实验后在150摄氏度下的PBDD / F浓度是初始浓度的五倍。以前尚未发现在如此低的温度下会形成PBDD / F。二次铜冶炼厂粉煤灰明显促进了PBDD / F的形成,这一结论得到了阿伦尼乌斯定律计算中发现的低活化能的支持。沉积在工业设施中的粉煤灰介导的PBDD / Fs的热化学形成,可以解释PCDD / Fs和从工业设施中释放出的类似化合物的“记忆效应”。通过粉煤灰介导的反应形成的丰富的多溴联苯醚(PBDEs)可能是通过粉煤灰介导的反应形成的PBDD / Fs的重要前体。通过飞灰介导的反应形成的多溴二苯醚的数量表明,次级铜冶炼厂可能是重整多溴二苯醚的重要来源。

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