Wang Jianmin, Wang Tian, Burken Joel G, Chusuei Charles C, Ban Heng, Ladwig Ken, Huang C P
Department of Civil, Architectural and Environmental Engineering, Missouri University of Science and Technology (Missouri S&T), Rolla, MO 65409, United States.
Chemosphere. 2008 Jun;72(3):381-8. doi: 10.1016/j.chemosphere.2008.02.045. Epub 2008 Apr 8.
Arsenic (As) poses a significant water quality problem and challenge for the environmental engineers and scientists in the world. The large volume of coal fly ash produced around the world is a potentially significant anthropogenic source of arsenic. Currently the leaching behavior of arsenic from fly ash is not well understood. Batch methods were used in this study to investigate arsenic leaching using a raw ash, and arsenic adsorption using a clean, washed ash. Experimental results indicated that pH had a significant effect on arsenic leaching or adsorption. Between pH 3 and 7, less arsenic was in the dissolved phase. When pH was less than 3 or greater than 7, increasing amounts of arsenic were leached or desorbed from fly ash. The leaching and adsorption behavior of arsenic was interpreted with the speciation of surface sites and arsenic. In a new approach, a speciation-based model was developed to quantify the arsenic adsorption as a function of pH and surface acidity parameters. This work is important in offering insight into the leaching mechanism of arsenic from coal fly ash, and providing a robust model based upon specific, measurable parameters to quantify arsenic adsorption by other solid media in addition to fly ash.
砷(As)给全球环境工程师和科学家带来了重大的水质问题与挑战。全球产生的大量粉煤灰是潜在的重要人为砷源。目前,粉煤灰中砷的浸出行为尚未得到充分理解。本研究采用批次法,用原灰研究砷的浸出,用清洁的水洗灰研究砷的吸附。实验结果表明,pH值对砷的浸出或吸附有显著影响。在pH值3至7之间,溶解相中砷的含量较少。当pH值小于3或大于7时,从粉煤灰中浸出或解吸的砷量增加。通过表面位点和砷的形态来解释砷的浸出和吸附行为。采用一种新方法,开发了一种基于形态的模型,以量化作为pH值和表面酸度参数函数的砷吸附。这项工作对于深入了解粉煤灰中砷的浸出机制以及提供一个基于特定可测量参数的可靠模型具有重要意义,该模型可用于量化除粉煤灰之外的其他固体介质对砷的吸附。