期刊文献+

电化学氧化法预处理超高盐榨菜腌制废水 被引量:7

Electrochemical Oxidation for Hypersaline Pickle Wastewater Pretreatment
在线阅读 下载PDF
导出
摘要 鉴于超高盐榨菜腌制废水导电性良好,采用电化学氧化法进行预处理(阳极为Ti基RuO2-TiO2-IrO2-SnO2网状涂层形稳电极),考察初始pH、电流密度、电解时间和极板间距对CODCr和氨氮去除率的影响,并探讨该过程中有机物相对分子量的变化规律.结果表明,在电流密度156 mA/cm2、极板间距1.5 cm、初始pH 4.3~5.0、电解时间120 min时,CODCr和氨氮去除率较佳,分别为55.74%和99.77%.出水pH升至9.54,盐度由7.0%降至6.4%,大分子有机物转化为小分子有机物,对后续生物处理有利. The electrochemical oxidation method was applied to treat hypersaline pickle wastewater with a RuOz-TiO2-IrO2-SnO2/Ti dimensionally stable electrode used as the anode. The effects of initial pH, current density, reaction time and electrode distance on the removal rates of CODcr and ammonia were investigated,and variability of the molecular weights of the organics was also studied. Under the optimal conditions with initial pH of 4. 3-5.0, current density of 156 mA/cm2 and electrode distance of 1.5 era, removals of COD cr and ammonia were 55.74% and 99.77% respectively within 120 rain. In addition, as the pH increased to 9.54, the salinity decreased from 7.0% to 6. 4% and macromolecular organics were converted into small organics, which were helpful to the following biological treatment.
出处 《环境科学研究》 EI CAS CSCD 北大核心 2012年第7期785-790,共6页 Research of Environmental Sciences
基金 国家水体污染控制与治理科技重大专项(2008ZX07315-004)
关键词 电化学 RuO2-TiO2-IrO2-SnO2/Ti阳极 榨菜腌制废水 盐度 electrochemical oxidation RuO2-TiO2-IrO2-SnOJTi anode pickle wastewater salinity
  • 相关文献

参考文献30

  • 1KARGI F. Empirical models for biological treatment of saline wastewater in rotating biodisc contactor [ J ]. Process Biochemistry, 2002,38 ( 3 ) : 399-403.
  • 2WINDEY K, BO I D, VERSTRAETE W. Oxygen-limited autotrophic nitrification-denitrification ( OLAND ) in a rotating biological contactor treating high-salinity wastewater [ J ]. Water Res,2005,39(18) :4512-4520.
  • 3周健,曾朝银,龙腾锐,黄厚富.高盐高氮榨菜废水生物脱氮试验研究[J].环境科学学报,2005,25(12):1636-1640. 被引量:25
  • 4JUANG R S, WU C Y. Microbial degradation of phenol in high- salinity solutions in suspensions and hollow fiber membrane contracts [ J ]. Chemosphere ,2007,66 ( 1 ) : 191 - 198.
  • 5YANG D, JAMES D E. Electrochemical oxidation for landfill leachate treatment [ J ]. Waste Manage, 2007,27 ( 3 ) : 380 - 388.
  • 6FEKI F,ALOUI F, FEKI M, et aL Electrochemical oxidation post- treatment of landfill leachates treated with membrane bioreactor [ J ]. Chemosphere ,2009,75 ( 2 ) : 256- 260.
  • 7杨云军,李庭刚,堵国成,沈志松,陈坚,张国平.电解氧化法预处理垃圾渗滤液[J].环境科学研究,2003,16(6):53-56. 被引量:31
  • 8张国芳,肖书虎,肖宏康,宋永会,曾萍,李辉,邵红.黄连素制药废水的电化学预处理试验[J].环境科学研究,2011,24(1):79-84. 被引量:25
  • 9RADHA K V, SRIDEVI V, KALAIVANI K. Electrochemical oxidation for the treatment of textile industry wastewater [ J ]. Bioresource Technology ,2009,100 ( 2 ) :987-990.
  • 10RAJU G B,KARUPPIAH M T, LATHA S S,et al. Electrochemical pretreatment of textile effluents and effect of electrode materials on the removal of organics [ J ]. Desalination, 2009,249 ( 1 ) : 167-174.

二级参考文献49

  • 1余琼卫,周元全.直接电解法处理染料废水的研究[J].环境污染治理技术与设备,2004,5(7):64-69. 被引量:23
  • 2乔世俊,赵爱平,徐小莲,赵慧宏,张政民,赵文超,邱莉萍,乔明.高级催化氧化法降解有机工业废水的研究[J].环境科学研究,2005,18(5):104-106. 被引量:25
  • 3黄昱,李小明,杨麒,曾光明,刘精今.高级氧化技术在抗生素废水处理中的应用[J].工业水处理,2006,26(8):13-17. 被引量:50
  • 4郑曼英,李丽桃.垃圾渗液中有机污染物初探[J].重庆环境科学,1996,18(4):41-43. 被引量:81
  • 5张自杰.排水工程[M]:第3版[M].北京:中国建筑工业出版社,1997..
  • 6卢里耶ЮЮ 雷世寰 等译.工业污水的化学分析[M].北京:化学工业出版社,1986..
  • 7赵继权 刘卫邦 赵宝润 等.生物流化床法处理黄连素废水小试和生产简介.环境保护科学,1982,(1):13-19.
  • 8CREASEY W. Biochemical effects of berberine [ J ]. Biochemical Pharmacology, 1979,28 : 1081 - 1084.
  • 9MIWA D W, MALPASS G R P, MACHADO S A S, et al. Electrochemical degradation of carbaryl on oxide electrodes [ J]. Water Res ,2006,40( 17 ) :3281-3289.
  • 10LIDIA S. Application of electrochemical oxidation for treatment of industrial wastewater: the influence of reactor hydrodynamics on direct and mediated processes [ J ]. Journal of Chemical Technology and Biotechnology ,2006,81 ( 8 ) : 1375-1383.

共引文献613

同被引文献82

引证文献7

二级引证文献40

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部