铁碳微电解

  • 网络iron-carbon micro-electrolysis
铁碳微电解铁碳微电解
  1. 铁碳微电解法在废水处理中的研究进展及应用现状

    Research Progress and Application Status of Iron-carbon Micro-electrolysis in Wastewater Treatment

  2. 铁碳微电解法处理1-萘酚-8-磺酸模拟废水的研究

    Study on the Treatment of 1-Naphthol-8-Sulfonic Simulant Wastewater by Iron-carbon Micro-electrolysis Technology

  3. 本文以实际生产废水为研究对象,用铁碳微电解法处理高COD、高色度和高含盐染料生产废水;

    Wastewater with high concentrations of dyes and salts from dye production process was treated by a microelectrolysis system with iron and carbon granules .

  4. 论文在全面综述物理和化学预处理技术的基础上,提出将铁碳微电解技术与Fenton试剂氧化技术联合用于高浓度难降解化工废水的预处理。

    Based on pHysical and chemical pretreatment , this thesis considers that the iron carbon micro-electrolysis technology and Fenton reagent oxidation technique are effectually combination ; it can easily be used for pretreatment for high concentration chemical wastewater .

  5. 在活性炭与Fenton试剂存在下,用微波辐射处理多次铁碳微电解处理后的富马酸废水,通过单因素和正交实验对影响因素进行了考察。

    Fumaric acid wastewater , treated by iron-carbon microelectrolysis for several times , was treated by microwave radiation in the presence of activated carbon and Fenton agent . The affecting factors were studied in single factor and orthonormal tests .

  6. 铁碳微电解法用于模拟染色废水脱色的研究

    Study of Fe-C Micro Electrolysis Treatment of Decolorization of Stimulated Dyeing Water

  7. 铁碳微电解&生化法处理医药废水

    Treatment Wastewater of Medicine Production by Microelectrolysis of Iron and Carbon-Biochemical Process

  8. 铁碳微电解法处理硬丁腈橡胶装置废水中试

    Pilot test for treating wastewater from nitrile rubber unit by ferric-carbon micro-electrolysis

  9. 研究了铁碳微电解&高效复合微生物对于化工有机废水的处理效果。

    The effect of ferric-carbon micro-electrolysis-effective synthesized microbiology is studied in this paper .

  10. 铁碳微电解对造纸黑液的脱色处理

    Decoloration of alkaline paper-making black liquor by iron-carbon microelectrolysis

  11. 铁碳微电解法处理拉开粉废水的静态试验研究

    Static model experimental study on nekal BX wastewater treatment with ferric-carbon micro electrolysis

  12. 铁碳微电解-曝气生物滤池处理聚醚废水

    Pretreatment for polyhydric wastewater by iron-carbon-micro-electrolysis and biofilter

  13. 铁碳微电解法处理染料生产废水

    Treatment of dye wastewater by microelectrolysis process

  14. 铁碳微电解法预处理糠醛废水的影响因素

    Treatment of Furfural Wastewater by Iron-carbon Micro-electrolysis

  15. 洗涤剂用表面活性剂铁碳微电解-Fenton试剂法处理高浓度表面活性剂废水研究

    A Study into Using Iron-carbon Microelectrolysis-Fenton Reagent to Treat Wastewater with High Concentration of Surfactant

  16. 铁碳微电解工艺预处理高质量浓度酒精废液

    Pretreatment of alcohol wastewater with micro-electrolysis

  17. 论文以石油化工中的己内酰胺废水与印染废水为研究对象,采用铁碳微电解技术分别进行了废水的深度处理与预处理,均取得了较好的处理效果。

    Micro-electrolysis was conducted to caprolactam wastewater and printing and dyeing wastewater respectively for advanced and pretreated treatment .

  18. 铁碳微电解技术是一种简单易行、低廉有效的废水处理技术应用于废水处理技术,是目前该领域中研究的热点之一。

    The iron-carbon micro-electrolysis technology is a simple , inexpensive and effective wastewater treatment technologies used in wastewater treatment technology , is currently one of the hotspots in the field .

  19. 系统地研究了铁碳微电解法处理模拟染色废水时影响脱色效果的各因素。

    In this paper , all the possible factors , which have effect on decolor results of simulated dyeing water through Fe-C micro electrolysis method , are studied more symmetrically .

  20. 以难生化降解的甲基橙为实验染料,采用铁碳微电解法对高浓度染料废水脱色进行模拟实验。

    This paper intends to introduce the authors ' study on the micro-electrolysis method to be applied to the decoloration of high concentration dyestuff wastewater with hard biodegradable methyl orange as a test dyestuff .

  21. 普通铁碳微电解絮凝法可通过催化氧化还原、铁氧体絮凝沉淀作用处理某些含重金属离子废水,但存在易板结、反应活性较低的问题。

    Fe-C micro-electrolysis can be used to treat wastewater containing some heavy metal ions by catalyzed oxidation reduction and flocculation precipitation of ferrite , but there are some problems of easy hardening and low reactivity .

  22. 铁-碳微电解法预处理老龄垃圾填埋场渗滤液的研究

    Research on iron-carbon micro-electrolytic method for pretreating aged-landfill leachate

  23. 并与传统铁碳分离微电解材料进行对比实验,比较其降解特性。

    And a comparative study between the F / C material prepared under optimal condition and the traditional micro-electrolysis material of the separation of iron and carbon was developed .