铝合金冶炼厂低温下无意产生持久性有机污染物的排放控制

T. Hatanaka
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摘要

本研究调查了铝合金冶炼厂织物过滤器无意中产生的持久性有机污染物(POPs)的排放。预期研究结果将指出减少金属熔炼炉等来源的这些排放的方法,在这些地方,现有废气处理对排放的控制是不够的。对织物过滤器中二恶英和多氯联苯(PCB)浓度的测量显示,它们在100℃左右形成,在这个温度下,这些副产物被认为只会轻微形成。在室内实验中,利用织物过滤器收集的粉煤灰,通过长时间加热18小时以上或预热到设定温度以上,在100℃以下确认形成。这种加热被认为是飞灰中催化剂再活化的必要条件。通过对3个电厂粉煤灰样品的比较,发现低温形成过程中氯的主要来源是水溶性氯化物,如氯化钾。通过比较得出结论:烟气喷水对减少铝合金冶炼厂的二恶英和多氯联苯排放是有效的。
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Emission Control of Unintentionally Produced POPs at Low Temperature in Aluminum Alloy Smelting Plants
This study examined emissions of unintentionally produced persistent organic pollutants (POPs) from fabric filters in aluminum alloy smelting plants. The results are expected to indicate means of reducing these emissions from sources, such as metal smelting furnaces, where emission control by existing exhaust gas treatments is insufficient. Measurement of dioxins and polychlorinated biphenyl (PCB) concentrations in fabric filters revealed their formation at around 100℃, at which temperatures these by-products were presumed to be formed only slightly. In laboratory experiments using fly ash collected from fabric filters, formation was confirmed below 100℃ by long-term heating of more than 18 hr or preheating above the set temperature. This heating was regarded as necessary for reactivation of the catalysts in fly ash. Comparison of fly ash samples collected from three plants elucidated that water-soluble chlorides such as potassium chloride were the principal source of chlorine during formation at low temperatures. This comparison led to the inference that water spraying of flue gas is effective for reducing dioxins and PCB emissions from aluminum alloy smelting plants.
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