Abanades S, Flamant G, Gauthier D, Tomas S, Huang L
Processes, Materials, and Solar Energy Laboratory (PROMES-CNRS, UPR 8521), B.P.5 Odeillo, F-66125 Font-Romeu Cedex, France.
J Hazard Mater. 2005 Sep 30;124(1-3):19-26. doi: 10.1016/j.jhazmat.2005.05.004.
This paper deals with the emission of heavy metals (HM) during the incineration of municipal solid waste in a fluidized bed reactor. This study focused on the development of a general method to identify the kinetics of vaporization of heavy metals from the on-line analysis of exhaust gas. This method is an inverse method, which requires only the time evolution of the HM concentration in exhaust gases (experimental data) and a global bubbling bed model developed for transient conditions at the reactor scale. First, a lab-scale fluidized bed incinerator was set-up to simulate the HM release during the thermal treatment of metal-spiked model wastes. A specific on-line analysis system based on ICP-OES was developed to measure in real time the variation of the relative concentration of HM in exhaust gases. Then, a two-phase flow bubbling bed model was developed and validated to calculate the kinetics of vaporization of HM from its measured concentration time profile in the outlet gas. The technique was first validated with model waste (metal-spiked mineral matrices), thus enabling at each time both solid sampling for measuring the HM vaporization kinetic and on-line analysis for measuring the HM concentration in the outlet gas. The inverse method was then applied to realistic artificial wastes (derived from real wastes) to identify the HM vaporization kinetics from the on-line analysis results.
本文研究了流化床反应器中城市固体废物焚烧过程中重金属(HM)的排放情况。本研究重点在于开发一种通用方法,通过对废气的在线分析来确定重金属蒸发动力学。该方法是一种反演方法,仅需要废气中重金属浓度随时间的变化(实验数据)以及针对反应器规模瞬态条件开发的整体鼓泡床模型。首先,搭建了实验室规模的流化床焚烧炉,以模拟掺有金属的模型废物热处理过程中重金属的释放情况。开发了基于电感耦合等离子体发射光谱仪(ICP - OES)的特定在线分析系统,以实时测量废气中重金属相对浓度的变化。然后,开发并验证了两相流鼓泡床模型,以根据其在出口气体中测得的浓度随时间变化曲线计算重金属的蒸发动力学。该技术首先用模型废物(掺有金属的矿物基质)进行了验证,从而能够每次既进行固体采样以测量重金属蒸发动力学,又进行在线分析以测量出口气体中的重金属浓度。然后将反演方法应用于实际人造废物(源自实际废物),以根据在线分析结果确定重金属蒸发动力学。