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个人信息Personal Information
教授
博士生导师
硕士生导师
性别:女
毕业院校:大连理工大学
学位:博士
所在单位:环境学院
学科:环境工程. 环境科学
办公地点:环境学院B617室
联系方式:0411-84706250
电子邮箱:qyy@dlut.edu.cn
化学沉淀-生物法处理难降解制药废水的实验研究
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发表时间:2007-01-01
发表刊物:沈阳建筑工程学院学报
所属单位:环境学院
卷号:23
期号:4
页面范围:655-659
ISSN号:1671-2021
摘要:A scheme was designed for treating pharmaceutical waste water, which contained high concentration of chemical oxygen demand (COD) and SO42-, and the impact of influent organic loads was also studied. SO42- was removed by the chemical deposition techniques, and COD was then removed by the batch Anaerobic Hydrolysis-acidogenesis-Aerobic biotechnology which was performed under different influent organic loads adjusted by changing HRT and MLSS. The impact of influent organic loads was estimated by the removal loads and effluent COD. When the amounts of precipitators CaCl2 and Na2SO4 were 13.64 g/L and 9.12 g/L respectively, the highest rate of SO42- removal was about 60%, and about 95% SS and a little COD were removed at the same time. The pretreated wastewater was then treated by the Anaerobic-Aerobic biotechnology, and the remaining COD of aerobic effluence was less than 300 mg/L, the second class discharge standard of Sewage Comprehensive Discharging Standard GB 8978-1996. When the HRT, MLSS of anaerobic and aerobic units were 2 days and 1 day, 14.75-15.41 g/L and 9.45-9.98 g/L, the corresponding optimal influent biological load (COD), biological removal loads were 0.268 kg/(kg· d) and 0.246 kg/(kg·d), 0.045 kg/(kg·d) and 0.231 kg/(kg·d). The effluent quality would turn worse with the influent biological load increasing. It is suggested that the Chemical Deposition-Anaerobic Hydrolysis-acidification-Aerobicbiotechnology was an efficient method to treat such pharmaceutical wastewater.
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