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Residues from Sewage Sludge Incineration for Ceramic Products with Potential for Zinc Stabilization

机译:陶瓷产品的污泥焚烧残渣具有锌稳定的潜力

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摘要

Serious environmental pollution has been frequently caused by the release of heavy metals from wastes generated from industrial activities. Although some of the heavy metals can be stabilized in ceramic matrix, the replacement of traditional ceramic precursors is needed due to adverse effects caused by clay mining. With abundant contents of aluminum, iron and silicon, the beneficial use of residues from sewage sludge incineration processes has attracted much attention. In this study, ZnO was simulated as zinc-bearing industrial waste, and the stabilization of zinc was achieved in aluminum- and iron-rich ceramic matrix provided by the residues of sewage sludge incineration. Through a 3-h sintering procedure at temperatures ranging from 650 to 1350 °C, zinc was found to be incorporated into a ZnAlxFe2-xO4spinel solid solution and the incorporation was greatly enhanced by the elevated temperature. The leachability of zinc was found to decline substantially with the continuous formation of the spinel when the samples were extracted in acidic, neutral and basic environments. Besides the effective stabilization of zinc, aluminum and iron can also be well immobilized in the sintered ceramic products. The temperature range of 950-1250 °C was found to be promising to reach the most satisfactory zinc stabilization without extra energy consumption, and to fabricate ceramic products with a variety of microstructures for future application. Therefore, the residues from the sewage sludge incineration can be blended into the existing ceramic sintering processes for making marketable products, which will further alleviate the environmental burden caused by heavy metal release from industrial wastes.
机译:工业活动产生的废物中重金属的释放经常造成严重的环境污染。尽管一些重金属可以稳定在陶瓷基体中,但是由于粘土开采引起的不利影响,需要替代传统的陶瓷前体。由于铝,铁和硅含量丰富,污水污泥焚烧过程中残留物的有益利用已引起广泛关注。在这项研究中,将ZnO模拟为含锌工业废物,并且通过污泥焚烧残渣提供的富含铝和铁的陶瓷基质实现了锌的稳定化。通过在650至1350°C的温度下进行3小时的烧结过程,发现锌被掺入ZnAlxFe2-xO4spinel固溶体中,并且由于高温而大大增强了掺入。当在酸性,中性和碱性环境中提取样品时,锌的可浸出性随着尖晶石的连续形成而大大降低。除了有效稳定锌外,铝和铁也可以很好地固定在烧结陶瓷产品中。发现950-1250°C的温度范围有望在不增加能耗的情况下达到最令人满意的锌稳定性,并制造出具有各种微结构的陶瓷产品以备将来使用。因此,可以将污水污泥焚烧中的残留物掺入现有的陶瓷烧结工艺中,以生产可销售的产品,这将进一步减轻工业废物释放重金属所造成的环境负担。

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