Wang Shutao, Ma Jun, Liu Baicang, Jiang Yifeng, Zhang Haiyang
School of Municipal and Environmental Engineering, Harbin Institute of Technology, Harbin 150090, China.
J Hazard Mater. 2008 Jan 15;150(1):109-14. doi: 10.1016/j.jhazmat.2007.04.092. Epub 2007 Apr 24.
The performance of the combined process of ozonation and biofiltration was studied for treating the secondary effluent from sewage treatment plant. It was found that COD, NH(3)-N, and TOC were removed from 40-52, 10-19, and 9-13 mg/L in the raw water to 18-23, 0.5-1.5, and 7-8.5 mg/L in the effluent water (removal efficiency were 58, 89, and 25%, respectively), respectively, with an ozone dose of 10 mg/L (0.7-1.1 mg O(3)/(mg TOC) and 0.2-0.25 mg O(3)/(mg COD)), and contacting time of 4 min. Under the operation conditions, ozonation enhanced the biodegradability of the organics in the secondary effluent, as illustrated by increasing biodegradable dissolved organic carbon (BDOC) value from 0.8-1.1 mg/L in the raw water to the 2.0-2.7 mg/L in the effluent water. Meanwhile, the percentage of the organics with molecular size less than 1k Da in the secondary effluent increased from 52.9 to 72.6%. The experimental results supported the expectation that the combined process of O(3)/Biofiltration might enhance the overall treatment efficiency of secondary effluent treatment.
研究了臭氧氧化与生物过滤联合工艺处理污水处理厂二级出水的性能。结果表明,在臭氧投加量为10mg/L(0.7 - 1.1mg O₃/(mg TOC)和0.2 - 0.25mg O₃/(mg COD))、接触时间为4min的条件下,原水中的COD、NH₃-N和TOC分别从40 - 52mg/L、10 - 19mg/L和9 - 13mg/L降至出水中的18 - 23mg/L、0.5 - 1.5mg/L和7 - 8.5mg/L(去除率分别为58%、89%和25%)。在该运行条件下,臭氧氧化提高了二级出水中有机物的生物降解性,可生物降解溶解性有机碳(BDOC)值从原水中的0.8 - 1.1mg/L增加到出水中的2.0 - 2.7mg/L。同时,二级出水中分子尺寸小于1kDa的有机物比例从52.9%增加到72.6%。实验结果证实了O₃/生物过滤联合工艺可能提高二级出水整体处理效率的预期。