Pelino M, Karamanov A, Pisciella P, Crisucci S, Zonetti D
Department of Chemistry, Chemical Engineering and Materials, University of L'Aquila, Monteluco di Roio, Italy.
Waste Manag. 2002;22(8):945-9. doi: 10.1016/s0956-053x(02)00080-6.
Electric arc furnace baghouse dust (EAFD), a waste by-product of the steelmaking process, contains the elements that are volatilized from the charge during the melting (Cr, Pb, Zn, Cu and Cd). The results of leaching tests show that the concentration of these elements exceeds the regulatory limits. Consequently, EAFD cannot be disposed of in ordinary landfill sites without stabilization of the heavy metals. In this work, the vitrification of EAFD, from both carbon and stainless steel productions, were studied. The vitrification process was selected as the inertizing process because it permits the immobilization of the hazardous elements in the glass network and represents an environmentally acceptable method for the stabilization of this waste. Classes of various compositions were obtained by mixing EAFD with glass cullet and sand. The EAFD and the glass products were characterized by DTA, TG, X-ray analysis and by the TCLP test. The results show that the stability of the product is influenced by the glass structure, which mainly depends on the Si/O ratio. Secondary crystallization heat-treatment were carried out on some samples. The results highlighted the formation of spinel phases, which reduced the chemical durability in acid media. The possibility to recover Zn from carbon steel production EAFD was investigated and about 60-70% of metal recovery was obtained. The resulting glass show higher chemical stability than glasses obtained without metal recovery.
电弧炉布袋灰尘(EAFD)是炼钢过程中的一种废弃副产品,含有在熔炼过程中从炉料中挥发出来的元素(铬、铅、锌、铜和镉)。浸出试验结果表明,这些元素的浓度超过了监管限值。因此,在不进行重金属稳定化处理的情况下,EAFD不能在普通垃圾填埋场处置。在这项工作中,研究了来自碳钢和不锈钢生产的EAFD的玻璃化处理。选择玻璃化处理作为固化过程,因为它能使有害元素固定在玻璃网络中,是一种环境可接受的稳定这种废物的方法。通过将EAFD与碎玻璃和沙子混合获得了各种成分的类别。通过差示热分析(DTA)、热重分析(TG)、X射线分析和毒性特征浸出程序(TCLP)试验对EAFD和玻璃产品进行了表征。结果表明,产品的稳定性受玻璃结构影响,而玻璃结构主要取决于硅/氧比。对一些样品进行了二次结晶热处理。结果突出了尖晶石相的形成,这降低了在酸性介质中的化学耐久性。研究了从碳钢生产的EAFD中回收锌的可能性,获得了约60 - 70%的金属回收率。所得玻璃比未进行金属回收获得的玻璃具有更高的化学稳定性。