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微电解臭氧氧化深度处理石化企业含盐污水试验研究
引用本文:许国平,王湘,周付健,贺学军,镇祝龙. 微电解臭氧氧化深度处理石化企业含盐污水试验研究[J]. 工业水处理, 2017, 37(6)
作者姓名:许国平  王湘  周付健  贺学军  镇祝龙
作者单位:岳阳长岭设备研究所有限公司,湖南岳阳,414012
基金项目:中石化长岭分公司科研项目
摘    要:针对某石化企业含盐污水的深度处理,开展了微电解氧化和臭氧氧化对比试验研究,比较了2种方法的处理效果。结果表明,对于微电解氧化法,在反应时间为2 h,pH为2~3,填料比为1∶1的条件下,COD去除率为12%~18%,B/C可从原水的0.07升高到0.11,B/C提高幅度小,出水可生化性仍较差,且产生较多沉渣;对于臭氧氧化法,当臭氧投加量为25 g/h,反应时间为2.0 h时,COD去除率达25%,B/C可从原水的0.07升高至0.35,B/C大幅提高,利于后续进一步生化处理。

关 键 词:含盐污水  微电解  臭氧  深度处理

Experimental study on the advanced treatment of salt-containing wastewater from a refinery by micro-electrolytic and ozonation
Xu Guoping,Wang Xiang,Zhou Fujian,He Xuejun,Zhen Zhulong. Experimental study on the advanced treatment of salt-containing wastewater from a refinery by micro-electrolytic and ozonation[J]. Industrial Water Treatment, 2017, 37(6)
Authors:Xu Guoping  Wang Xiang  Zhou Fujian  He Xuejun  Zhen Zhulong
Abstract:Aiming at the advanced treatment of salt-containing wastewater in a petrochemical enterprise,the research of comparative tests on micro-electrolytic oxidation and ozone oxidation methods has been accomplished.The treatment effects of the two methods are compared.The results show that for micro-electrolytic oxidation method,when reaction time is 2 h,pH 2-3,filler ratio 1:1,the removing rate of COD reaches 12%-18%,B/C increases from 0.07 to 0.11,and biodegradability is still rather poor.For ozone oxidation method,when the ozone dosage is 25 g/h and reaction time 2.0 h,the COD removing rate reaches 25%,B/C can increase from 0.07 to 0.35 substantially,being advantageous to the subsequent biochemical treatment.
Keywords:salt-containing wastewater  micro-electrolytic  ozone  advanced treatment
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