Key Laboratory of Integrated Regulation and Resource Development on Shallow Lakes, Ministry of Education, College of Environment, Hohai University, Nanjing 210098, PR China.
J Hazard Mater. 2012 May 15;215-216:252-8. doi: 10.1016/j.jhazmat.2012.02.060. Epub 2012 Mar 3.
The effect of inorganic ions and dissolved organic matter (DOM) on the TiO(2) photocatalytic removal of estrogenic activity from secondary effluents of municipal wastewater treatment plants was investigated. The presence of HPO(4)(2-), NH(4)(+), and HCO(3)(-) resulted in a significantly negative impact on the photocatalytic removal of estrogenic activity from synthetic water due to their strong adsorption on the surface of TiO(2). However, only a weak impact was noted during photocatalytic removal of estrogenic activity from secondary effluent with these ions added, since the presence of DOM in real wastewater played a more important role in inhibiting photocatalytic removal of estrogenic activity than inorganic ions. By investigating the effect of different DOM fractions on photocatalytic removal of estrogenic activity, polar compounds (PC) were found to cause a temporary increase in estrogenic activity during TiO(2) photocatalysis. Fluorescence spectroscopy and molecular weight (MW) analysis on secondary effluent spiked with PC during TiO(2) photocatalysis suggest that large MW organic matter (>4.5kDa) in secondary effluent, such as humic/fulvic acid, not only could play an important role in inhibiting photocatalytic removal of estrogenic activity but also is responsible for the temporary increase in estrogenic activity during the same process.
研究了无机离子和溶解有机物 (DOM) 对 TiO(2) 光催化去除城市污水处理厂二级出水内分泌干扰活性的影响。由于 HPO(4)(2-)、NH(4)(+) 和 HCO(3)(-) 在 TiO(2)表面的强烈吸附,它们的存在对合成水中内分泌干扰活性的光催化去除有显著的负面影响。然而,在添加这些离子的二级出水中进行光催化去除内分泌干扰活性时,仅观察到较弱的影响,因为真实废水中 DOM 的存在比无机离子对抑制光催化去除内分泌干扰活性起着更重要的作用。通过研究不同 DOM 分数对光催化去除内分泌干扰活性的影响,发现极性化合物 (PC) 在 TiO(2)光催化过程中会导致内分泌干扰活性暂时增加。在 TiO(2)光催化过程中向二级出水中添加 PC 进行荧光光谱和分子量 (MW) 分析表明,二级出水中的大 MW 有机物(>4.5kDa),如腐殖酸/富里酸,不仅可以在抑制光催化去除内分泌干扰活性方面发挥重要作用,而且还对同一过程中内分泌干扰活性的暂时增加负责。