Affordable Water Filtration Technology for Disinfection By-Product Control for Small Rural Communities by Using Carbon Extracted from Local Fly Ash

He-fei Zhang, T. Husain
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Abstract

The fly ash generated from local pulp and paper industries was transformed into activated carbon (AC) through physical activation process in a high temperature tube furnace in this study. Effects of two factors including activation temperature and activation time were investigated. Iodine number (IN), methylene blue value (MBV), and surface microstructure were all analyzed to assess the adsorption capacity of different carbon samples. The surface area of the carbon sample increased significantly from 486.44 m2/g to 847.26 m2/g before and after activation. The jar tests revealed that the use of 0.5 g (AC)/L (water) has the highest adsorption effectiveness. Meanwhile, the column filtration experiment indicated more than 60% of the organic matter can be removed by the carbon barrier within 2 hours filtration. The follow-up chlorination experiment illustrated that the formation of trihalomethanes (THMs) and haloacetic acids (HAAs) could be considerably prevented after filtration. Above all, the cost-effective carbon filtration technology developed in this study can potentially be applied as a pre-treatment technology for intake source waters for local communities.
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利用从当地粉煤灰中提取的碳控制小型农村社区消毒副产物的经济实惠的水过滤技术
本研究以当地制浆造纸工业产生的粉煤灰为原料,在高温管式炉中通过物理活化工艺转化为活性炭(AC)。考察了活化温度和活化时间两个因素的影响。通过分析碘值(IN)、亚甲基蓝值(MBV)和表面微观结构来评价不同碳样品的吸附能力。活化前后碳样的表面积由486.44 m2/g显著增加到847.26 m2/g。罐子试验表明,使用0.5 g (AC)/L(水)的吸附效果最高。同时,柱过滤实验表明,在2小时的过滤时间内,碳屏障的有机物去除率可达60%以上。后续的氯化实验表明,过滤后可有效防止三卤甲烷(THMs)和卤乙酸(HAAs)的生成。最重要的是,本研究开发的具有成本效益的碳过滤技术可以作为当地社区取水水源的预处理技术。
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