Kerc A, Bekbolet M, Saatci A M
Environmental Engineering Department, Faculty of Engineering, Marmara University, 34722 Kadikoy, Istanbul, Turkey.
Water Sci Technol. 2004;49(4):7-12.
In this study ultrafiltration has been used for the fractionation of humic acid samples. Humic acids were treated in a sequential oxidation system in which ozonation was followed by photocatalytic oxidation using TiO2. Evaluation of the spectroscopic characteristics of the oxidized and fractionated humic acid samples have shown that molecular size distribution ranges shift to lower molecular sizes depending on the oxidation stages. Applied ozone dosage and irradiation time during the photocatalysis stage are the factors affecting the molecular size distribution in the treated humic acid samples. Formation of lower molecular weight compounds during the ozonation stage resulted in increased degradation rates during the photocatalysis stage.
在本研究中,超滤已被用于腐殖酸样品的分级分离。腐殖酸在一个连续氧化系统中进行处理,该系统中先进行臭氧化,然后使用TiO₂进行光催化氧化。对氧化和分级分离后的腐殖酸样品的光谱特性评估表明,分子大小分布范围会根据氧化阶段向较低分子大小转移。光催化阶段所施加的臭氧剂量和辐照时间是影响处理后腐殖酸样品中分子大小分布的因素。臭氧化阶段中低分子量化合物的形成导致光催化阶段的降解速率增加。