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氨对粉煤灰中汞浸出的作用。

The role of ammonia on mercury leaching from coal fly ash.

作者信息

Wang Jianmin, Wang Tian, Mallhi Harmanjit, Liu Yu, Ban Heng, Ladwig Ken

机构信息

Department of Civil, Architectural and Environmental Engineering, University of Missouri-Rolla, Rolla, MO 65409, USA.

出版信息

Chemosphere. 2007 Nov;69(10):1586-92. doi: 10.1016/j.chemosphere.2007.05.053. Epub 2007 Jul 2.

Abstract

The Federal Clean Air Interstate Rule issued in March 2005 will result in many power plants employing ammonia-based technologies to control NO(x) emission. The Clean Air Mercury Rule, issued at the same time, will encourage many power plants to use various technologies to remove mercury from flue gas, generating fly ashes that contain elevated concentrations of mercury. Ammonia forms relatively strong complexes with mercury compared to most other cationic elements and, therefore, may change the leaching characteristics of mercury. Understanding the impact of ammonia on the leaching of mercury from fly ash is critical in predicting the potential environmental impact of future fly ash. Batch methods were used to investigate the ammonia impact on mercury leaching from fly ash under different pH conditions. The results indicated that mercury leaching without external ammonia addition is not significant. However, ammonia addition increased mercury leaching in the alkaline pH range, due to the formation of less adsorbable mercury-ammonia complexes. Washed ash released more mercury than the raw ash if the ammonia concentration is the same, mainly due to the dissolution of some ash components during washing which exposed more mercury on ash surface. Mercury adsorption data indicated that more than 90% of available mercury was adsorbed by fly ash even in the presence of 1000 mg l(-1) ammonia addition.

摘要

2005年3月发布的《联邦清洁空气州际规则》将导致许多发电厂采用基于氨的技术来控制氮氧化物(NO(x))排放。同时发布的《清洁空气汞规则》将鼓励许多发电厂使用各种技术从烟气中去除汞,从而产生汞浓度升高的飞灰。与大多数其他阳离子元素相比,氨与汞形成相对较强的络合物,因此可能会改变汞的浸出特性。了解氨对飞灰中汞浸出的影响对于预测未来飞灰的潜在环境影响至关重要。采用批次法研究了在不同pH条件下氨对飞灰中汞浸出的影响。结果表明,不添加外部氨时汞的浸出不显著。然而,由于形成了吸附性较弱的汞-氨络合物,在碱性pH范围内添加氨会增加汞的浸出。如果氨浓度相同,水洗灰比原灰释放出更多的汞,这主要是因为水洗过程中一些灰分成分溶解,使更多的汞暴露在灰表面。汞吸附数据表明,即使添加1000 mg l(-1)的氨,超过90%的可利用汞仍被飞灰吸附。

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