Mosteo R, Sarasa J, Ormad Maria P, Ovelleiro J L
Department of Chemical Engineering and Environmental Technologies, University of Zaragoza, C/Pedro Cerbuna, 12, 50009, Zaragoza, Spain.
J Agric Food Chem. 2008 Aug 27;56(16):7333-8. doi: 10.1021/jf8005678. Epub 2008 Jul 19.
In this study, winery wastewaters are considered for degradation using heterogeneous photo-Fenton as a preliminary step before biotreatment. The heterogeneous photo-Fenton process assisted by solar light is able to partially degrade the organic matter present in winery wastewaters. When an initial hydrogen peroxide concentration of 0.1 M is used over 24 h of treatment, a degradation yield of organic matter (measured as TOC) of around 50% is reached. The later treatment (activated sludge process) allows the elimination of 90% of the initial TOC present in pretreated winery wastewaters without producing nondesired side-effects, such as the bulking phenomenon, which is usually detected when this treatment is used alone. The final effluent contains a concentration of organic matter (measured as COD) of 128 mg O2/L. The coupled system comprising the heterogeneous photo-Fenton process and biological treatment based on activated sludge in simple stage is a real alternative for the treatment of winery wastewater.
在本研究中,在生物处理之前,首先考虑采用非均相光芬顿法对酿酒厂废水进行降解。太阳光辅助的非均相光芬顿工艺能够部分降解酿酒厂废水中存在的有机物。当在24小时的处理过程中使用0.1M的初始过氧化氢浓度时,有机物(以总有机碳计)的降解率达到约50%。后续处理(活性污泥法)能够去除预处理后的酿酒厂废水中90%的初始总有机碳,且不会产生不良副作用,如单独使用该处理方法时通常会检测到的污泥膨胀现象。最终出水的有机物浓度(以化学需氧量计)为128mg O2/L。由非均相光芬顿工艺和单级活性污泥生物处理组成的耦合系统是处理酿酒厂废水的一种切实可行的替代方案。