Graduate School of Life and Environmental Sciences, University of Tsukuba, Tsukuba, Ibaraki, Japan.
Bioresour Technol. 2013 Jun;137:57-62. doi: 10.1016/j.biortech.2013.03.071. Epub 2013 Mar 18.
In this study, photocatalysis was used to improve the dewaterability and settleability of waste activated sludge (WAS) by a solar photocatalytic reactor with transparent Ag/TiO2 film as photocatalyst. Specific resistance of filtration (SRF) and sludge volume index (SVI) were used to evaluate WAS dewaterability and settleability, respectively, and the mechanism of photocatalysis was interpreted from the changes of pellets, loosely/tightly bound extracellular polymeric substances (LB-EPS/TB-EPS), proteins (PN) and polysaccharides (PS) in WAS. Results showed that the SRF and SVI values decreased by 86.0% and 80.0%, respectively after photocatalysis treatment for 18 h. The changes of LB-EPS/TB-EPS and morphology of WAS indicated that WAS was degraded in a stepwise and mild manner, in which the sludge pellets were possibly converted into TB-EPS and then LB-EPS. Simultaneously, LB-EPS were degraded into carbon dioxide and water by Ag/TiO2 photocatalysis.
在这项研究中,使用带有透明 Ag/TiO2 薄膜作为光催化剂的太阳能光催化反应器,通过光催化来提高废活性污泥 (WAS) 的脱水性能和沉降性能。比阻 (SRF) 和污泥体积指数 (SVI) 分别用于评估 WAS 的脱水性能和沉降性能,从 WAS 中颗粒、松散/紧密结合胞外聚合物物质 (LB-EPS/TB-EPS)、蛋白质 (PN) 和多糖 (PS) 的变化来解释光催化的机理。结果表明,经过 18 小时的光催化处理后,SRF 和 SVI 值分别降低了 86.0%和 80.0%。LB-EPS/TB-EPS 的变化和 WAS 的形态表明,WAS 是分阶段和温和地降解的,其中污泥颗粒可能转化为 TB-EPS,然后是 LB-EPS。同时,Ag/TiO2 光催化将 LB-EPS 降解为二氧化碳和水。