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应用ORP预测和控制地下水除铁滤池出水含铁量
引用本文:余健,曾光明,谢更新,黄国和.应用ORP预测和控制地下水除铁滤池出水含铁量[J].中国环境科学,2003,23(6):0-0.
作者姓名:余健  曾光明  谢更新  黄国和
作者单位:1.湖南大学土木工程学院 湖南长沙410082;2.湖南大学环境科学与工程系 湖南长沙410082
基金项目:国家自然科学基金资助项目(50179011、70171055),国家自然科学杰出人才基金资助项目(50225926),2000年教育部高等学校优秀青年教师教学科研奖励计划资助项目,国家“863”计划 (2001AA644020)
摘    要:试验研究了应用氧化还原电位(ORP)预测和控制除铁滤池出水含铁量的可行性,探讨了水力负荷(HLR)、溶解氧(DO)和pH值对ORP和滤池除铁效果的影响以及曝气过滤除铁的机理.结果表明,在pH值为6.69,DO为6.8mg/L时,滤池除铁机理主要为接触催化氧化作用;HLR、DO和pH值对滤池除铁有较大的影响;滤池出水含铁量(Y)与ORP(X)之间的关系可用回归方程Y=0.0004exp3816/(X+200)] (R2=0.9664)表示;当ORP在400~510mV时,滤池出水含铁量小于0.3mg/L.

关 键 词:氧化还原电位  预测与控制  地下水除铁  接触催化氧化  
文章编号:1000-6923(2003)06-0648-05
收稿时间:1900-01-01;
修稿时间:2003年2月27日

Using ORP for predicting and controlling the iron content of the efflluent from the groundwater filter bed for iron removal
YU Jian,ZENG Guang-ming,XIE Geng-xin,HUANG Guo-he.Using ORP for predicting and controlling the iron content of the efflluent from the groundwater filter bed for iron removal[J].China Environmental Science,2003,23(6):0-0.
Authors:YU Jian  ZENG Guang-ming  XIE Geng-xin  HUANG Guo-he
Institution:YU Jian1,ZENG Guang-ming2,XIE Geng-xin2,HUANG Guo-he2
Abstract:Through experiment, the feasibility of using oxidation-reduction potential (ORP) to predict and control the iron content of the effluent from the iron removal filter bed was studied. The influences of hydraulic loading rate (HLR), dissolved oxygen (DO), and pH value on ORP and iron removal effect of the filter bed, as well as iron removal mechanism of the aeration filter were explored. As pH value was 6.69 and DO was 6.8mg/L, the iron removal mechanism of the filter bed was mainly contact-catalytic oxidation action. HLR, DO and pH value had greater influences on iron removal of the filter bed. The relation between iron content of the filter bed effluent (Y) and ORP (X) might be expressed by the regressive equation. At ORP of 400~510mV, the iron content of the filter bed effluent was below <0.3mg/L.
Keywords:oxidation-reduction potential  predicting and controlling  iron removal of groundwater  contact-catalytic oxidation  
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