Research Institute for Environmental Technology and Sustainable Development, Korea University, 145, Anam-Ro, Sungbuk-Gu, Seoul, 02841, Republic of Korea.
School of Civil Environmental and Architectural Engineering, Korea University, 145, Anam-Ro, Sungbuk-Gu, Seoul, 02841, Republic of Korea.
J Environ Manage. 2019 Jun 1;239:159-166. doi: 10.1016/j.jenvman.2019.03.064. Epub 2019 Mar 18.
Foam-glass as an effective filter media in a high-rate filtration process was evaluated for the removal of particulate matter containing phosphorus in municipal wastewater. The foam-glass with a low sphericity exhibited a higher porosity (60.2%) and a lower apparent specific gravity (0.50 g/cm) compared with a conventional sand media (35.1% and 1.19 g/cm). In particular, the high porosity of the foam-glass increased its surface area for capturing particles with coagulation, leading to a significantly decreasing head loss in the filtration bed column, resulting in a significantly longer filtration duration (more than 2 times) and a slightly higher removal of contaminants (approximately 4.8% for a suspended solid and 2% for the total phosphorus). Additionally, while backwashing of the conventional sand media required about 30% of the bed volume, the low specific gravity of the foam-glass media could be expanded to 100% of the volume due to its lower energy demand. Based on these advantages, it is expected that the foam-glass media will have a vital role as an alternative media in high-rate filtration processes.
泡沫玻璃作为一种高效过滤介质,在去除城市废水中含磷颗粒物方面的应用得到了评估。与传统的砂介质相比,低球度的泡沫玻璃具有更高的孔隙率(60.2%)和更低的视比重(0.50 g/cm³)。特别是泡沫玻璃的高孔隙率增加了其用于捕捉凝结颗粒的表面积,从而导致过滤床层的水头损失显著降低,过滤持续时间显著延长(超过 2 倍),污染物的去除率也略有提高(悬浮固体约 4.8%,总磷约 2%)。此外,传统砂介质的反冲洗需要大约 30%的床体积,而泡沫玻璃介质由于其低能耗,可以扩展到 100%的体积。基于这些优势,预计泡沫玻璃介质将在高速过滤过程中作为替代介质发挥重要作用。