Department of Environmental and Biological Sciences, University of Eastern Finland, P.O. Box 1627, FI-70211 Kuopio, Finland.
Department of Environmental and Biological Sciences, University of Eastern Finland, P.O. Box 1627, FI-70211 Kuopio, Finland.
Waste Manag. 2020 Aug 1;114:1-16. doi: 10.1016/j.wasman.2020.06.035. Epub 2020 Jul 2.
Development of thermal processes for selective recovery of Zn and other valuable elements from municipal solid waste incineration (MSWI) fly ash requires comprehensive knowledge of the impact of gas atmosphere on the volatile behaviour of the element constituents of the ash at different reaction temperatures. This study assesses the partitioning of 18 elements (Al, As, Bi, C, Ca, Cd, Cl, Cu, K, Mg, Na, P, Pb, S, Sb, Sn, Ti, and Zn) between condensed and gaseous phases during thermal treatment of MSWI fly ash in both oxidising gas and reducing gas atmospheres, at different temperatures spanning the range 200-1050 °C. The operating atmosphere had major impacts on the partitioning of the following elements: As, Bi, C, Cd, Cu, Na, Pb, S, Sb, Sn, and Zn. The partitioning of these elements cannot be accurately predicted over the full range of investigated operating conditions with global thermodynamic equilibrium calculations alone, i.e. without also considering chemical kinetics and mass transfer. In oxidising conditions, the following elements were predominately retained in condensed phases, even at high temperatures: As, Bi, Sb, Sn, and Zn. All these elements, except As, were largely released to the gas phase (>70%) at high temperatures in reducing conditions. The impact of gas atmosphere on the volatility of Cd and Pb was greatest at low reaction temperatures (below ~750 °C). Results for volatile matrix elements, specifically C, Cl, K, Na, and S, are interpreted in terms of the mechanisms governing the release of these elements to the gas phase.
开发用于从城市固体废物焚烧(MSWI)飞灰中选择性回收 Zn 和其他有价值元素的热工艺需要全面了解气体氛围对灰分中元素成分在不同反应温度下的挥发性行为的影响。本研究评估了在氧化和还原气体氛围下,在 200-1050°C 的不同温度下,MSWI 飞灰在热处理过程中 18 种元素(Al、As、Bi、C、Ca、Cd、Cl、Cu、K、Mg、Na、P、Pb、S、Sb、Sn、Ti 和 Zn)在凝聚相与气相之间的分配。操作气氛对以下元素的分配有重大影响:As、Bi、C、Cd、Cu、Na、Pb、S、Sb、Sn 和 Zn。仅通过全局热力学平衡计算(即不考虑化学动力学和传质),无法准确预测这些元素在整个研究操作条件范围内的分配。在氧化条件下,即使在高温下,以下元素主要仍保留在凝聚相中:As、Bi、Sb、Sn 和 Zn。在还原条件下,所有这些元素(除了 As)在高温下主要释放到气相中(>70%)。在低反应温度(低于~750°C)下,气体氛围对 Cd 和 Pb 的挥发性的影响最大。对于挥发性基质元素,特别是 C、Cl、K、Na 和 S,其结果是根据这些元素释放到气相中的机制来解释的。