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从 MSWI 飞灰中去除氯。

Removal of chloride from MSWI fly ash.

机构信息

Sustainable Environment Research Center, National Cheng Kung University, No. 500, Sec. 3, An-Ming Rd., Tainan 709, Taiwan.

出版信息

J Hazard Mater. 2012 Oct 30;237-238:116-20. doi: 10.1016/j.jhazmat.2012.08.010. Epub 2012 Aug 10.

Abstract

The high levels of alkali chloride and soluble metal salts present in MSWI fly ash is worth noting for their impact on the environment. In addition, the recycling or reuse of fly ash has become an issue because of limited landfill space. The chloride content in fly ash limits its application as basis for construction materials. Water-soluble chlorides such as potassium chloride (KCl), sodium chloride (NaCl), and calcium chloride hydrate (CaCl(2) · 2H(2)O) in fly ash are easily washed away. However, calcium chloride hydroxide (Ca(OH)Cl) might not be easy to leach away at room temperature. The roasting and washing-flushing processes were applied to remove chloride content in this study. Additionally, air and CO(2) were introduced into the washing process to neutralize the hazardous nature of chlorides. In comparison with the water flushing process, the roasting process is more efficient in reducing the process of solid-liquid separation and drying for the reuse of Cl-removed fly ash particles. In several roasting experiments, the removal of chloride content from fly ash at 1050°C for 3h showed the best results (83% chloride removal efficiency). At a solid to liquid ratio of 1:10 the water-flushing process can almost totally remove water-soluble chloride (97% chloride removal efficiency). Analyses of mineralogical change also prove the efficiency of the fly ash roasting and washing mechanisms for chloride removal.

摘要

值得注意的是,MSWI 飞灰中存在高浓度的碱氯化物和可溶性金属盐,这会对环境造成影响。此外,由于土地填埋空间有限,飞灰的再循环或再利用已成为一个问题。飞灰中的氯含量限制了其作为建筑材料基础的应用。飞灰中的水溶性氯化物,如氯化钾(KCl)、氯化钠(NaCl)和氯化钙水合物(CaCl(2)·2H(2)O),很容易被冲走。然而,在室温下,氯化钙氢氧化物(Ca(OH)Cl)可能不容易浸出。本研究采用焙烧和冲洗工艺去除氯化物含量。此外,在冲洗过程中引入空气和 CO(2),以中和氯化物的危害性。与水冲洗工艺相比,焙烧工艺在减少固液分离和干燥过程方面更有效,可重复使用去除 Cl-的飞灰颗粒。在几次焙烧实验中,在 1050°C 下焙烧 3 小时可达到最佳的脱氯效果(脱氯效率为 83%)。在固液比为 1:10 的条件下,水冲洗工艺几乎可以完全去除水溶性氯化物(脱氯效率为 97%)。矿物变化分析也证明了飞灰焙烧和冲洗脱氯机制的效率。

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