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UV/氯联合处理含溴溶液中溴酸根的生成 被引量:7

Bromate Ions Formation in UV/Chlorination Processes for Bromide-Containing Solutions
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摘要 研究了UV和氯联合作用下溴酸根离子(BrO3^-)在低浓度含溴溶液中的生成,旨在探讨pH、次氯酸钠(NaOCl)浓度、溶解氧(DO)、光强和温度等因素对其生成的影响.研究表明,暗反应条件下H2O-NaOCl-Br-体系较稳定,而UV照射可使游离氯浓度持续降低,同时伴有部分Br-(6.6%~32%)被氧化成BrO3-离子;pH、温度和光强恒定时余氯的分解可用拟一级反应速率方程拟合;实验条件下(I为610~1 896μW/cm2,T为12.2~36.1℃),拟一级反应速率常数分别与体系温度和光强值有线性关系;BrO3-的生成大致可以分为快速、慢速和平缓3个阶段;在慢速生成阶段,BrO3-的生成量与余氯的分解量有良好的线性关系(绝大部分相关系数在0.96以上);实验范围内(pH为4.41~11.07,DO为1.5~9 mg/L,Cl2为1.23~4.50 mg/L),低pH、低DO和高初始NaOCl(以氯计)浓度有利于溴酸根的生成,提高温度与光强均不同程度提高溴酸根生成速度,但同时因加速余氯的分解而减少了溴酸根的总生成时间. Bromate ions formation in UV/chlorination processes was systematically investigated. Experimental conditions were explored, such as pH, initial concentration of NaOCl, dissolved oxygen, UV light intensity and water temperature. The results showed impalpable changes of the H20-NaOCl-Br^- system was observed in dark, whereas in UV/chlorinatian processes free chlorine was continuously reduced and a considerable ratio (6.6 - 32 percent) of bromide was oxidized to bromate. The chlorine decomposition followed pseudo-first order rate equation when the reaction conditions, including pH, temperature and UV light intensity, was nearly fixed. Within the light intensity range of 610 ~1 896 μW/cm^2 and temperature range of 12.2 - 36.1℃ the pseudo-first order rate constants had a linear relationship with temperature and light intensity, respectively. Bromate formation could be divided totally into three stages: quick-form stage, slow-form stage and plateau stage. In slow-form stage the production of bromate had a good linear relationship with the amount of decayed chlorine, of which the regression coefficients were higher than 0.96 in most cases. Under the conditions in these experiments (pH 4.41 ~ 11.07, DO 1.5~ 9 mg/L, CI: 1.23 - 4.50 mg/L), production of bromate was favored under the circumstance with low pH value, low DO value and high chlorine concentration. Both increasing temperature and increasing light intensity improved the creation of bromate, as well as reduced the duration of bromate forming process because of the acceleration of chlorine decomposition.
出处 《环境科学》 EI CAS CSCD 北大核心 2007年第11期2526-2532,共7页 Environmental Science
基金 国家高技术研究发展计划(863)项目(2002AA601130) 国家科技攻关计划重大项目(2003BA808A17) 上海市科学技术委员会基础研究重点项目(05JC14059)
关键词 溴酸根 UV 氯化 水处理 bromate UV chlorination water treatment
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参考文献8

  • 1Butler R,Godleyn A,Lytton L,et al.Bromate environmental contamination:review of impact and possible treatment[J].Critical Reviews in Environmental Science and Technology,2005,35 (3):193 - 217. 被引量:1
  • 2Gunten U V.Ozonation of drinking water partⅡ:disinfection and byproduct formation in presence of bromide,iodide or chlorine[J].Water Research,2003,37(7):1469- 1487. 被引量:1
  • 3Macalady D L,Carpenter J H,Moore C A.Sunlight-induced bromate formation in chlorinated seawater[J].Science,1977,195(4284):1335 - 1337. 被引量:1
  • 4Ormeci B,Ducoste J J,Linden K G.UV disinfection of chlorinated water:impact on chlorine concentration and UV dose delivery[J].Journal of Water Supply Research and Technology-Aqua,2005,54(3):189 - 199. 被引量:1
  • 5Kemmer F N.The Nalco Water Handbook[M].(2nd Edition).New York:McGrew Hill Book Company,1987.316 - 316. 被引量:1
  • 6Emmert G L.Chemical aspects of water treatment part 1.Chemical characterization of oxidants present in liquors following electrolysis of brine.part 2.Bromate ion formation and removal in water treatment[D].Miami:Miami University,1999.167-172. 被引量:1
  • 7Liu Q,Schurter L M,Muller C E,et al.Kinetics and mechanism of aqueous ozone reactions with bromide,sulfite,hydrogen sulfate,iodide,and nitrite ions[J].Inorganic Chemistry,2001,40(2):4436 - 4442. 被引量:1
  • 8Farkas L,Lewin M,Bloch R.The reaction between hypochlorite and bromides[J].J American Chemical Society,1949,71(6):1988- 1991. 被引量:1

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