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New insights on mercury abatement and modeling in a full-scale municipal solid waste incineration flue gas treatment unit

机译:全规模城市固体废物焚烧烟气处理单元中汞消除和建模的新见解

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Modeling approaches are generally used to describe mercury transformations in a single step of flue gas treatment processes. However, less attention has been given to the interactions between the different process stages. Accordingly, the mercury removal performance of a full-scale solid waste incineration plant, equipped with a dry flue gas treatment line was investigated using two complementary modeling strategies: a thermochemical equilibrium approach to study the mercury transformation mechanisms and speciation in the flue gas, and a kinetic approach to describe the mercury adsorption process. The modeling observations were then compared to real-operation full-scale data. Considering the typical flue gas composition of waste incineration facilities (high concentrations of HCl compared to Hg), it was found that a process temperature decrease results in better mercury removal efficiencies, associated with a higher oxidation extent of Hg in HgCl2, and the enhancement of the sorbent capacity. Improvements can also be attained by increasing the sorbent injection rate to the process, or the solid/gas separation cycles. An empirical correlation to predict the mercury removal efficiency from the main operating parameters of dry flue gas treatment units was proposed, representing a useful tool for waste incineration facilities. The presented modeling approach proved to be suitable to evaluate the behavior of full-scale gas treatment units, and properly select the most adequate adjustments in operating parameters, in order to respect the increasingly constraining mercury emissions regulations. (C) 2020 Elsevier Ltd. All rights reserved.
机译:建模方法通常用于描述烟气处理过程的单一步骤中的汞变换。然而,已经对不同的过程阶段之间的相互作用进行了不太关注。因此,采用两种互补建模策略研究了配备有干烟气处理线的全尺寸固体废物焚烧厂的汞去除性能:一种测量烟气变换机制和烟气形态的热化学均衡方法,以及描述汞吸附过程的动力学方法。然后将建模观察与实际运行全尺度数据进行比较。考虑到废物焚烧设施的典型烟气组成(与HG相比高浓度的HCl),发现过程温度降低导致更好的汞去除效率,与HgCl2中Hg的更高氧化程度相关,以及增强吸附物能力。还可以通过将吸附剂注入速率增加到过程或固体/气体分离循环来实现改进。提出了预测干烟气处理单元主营工作参数的经验相关性,代表了废物焚烧设施的有用工具。 The presented modeling approach proved to be suitable to evaluate the behavior of full-scale gas treatment units, and properly select the most adequate adjustments in operating parameters, in order to respect the increasingly constraining mercury emissions regulations. (c)2020 elestvier有限公司保留所有权利。

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