腐蚀电池

  • 网络corrosion cell;OCC
腐蚀电池腐蚀电池
  1. 催化铁-氧腐蚀电池处理活性艳红X-3B

    Study on Treatment of Reactive Red Dye X-3B by Fe-O_2 Corrosion Cell with Catalyst

  2. 薄层液膜下金属电化学腐蚀电池的设计

    Design of electrochemical corrosion cell for metal under thin layer electrolytes

  3. Zn主要以固溶方式随β相凝固,作为腐蚀电池的阴极,在腐蚀过程中浓度基本不变化。

    Zn is solidified with the β phase as solution , as the cathode of corrosion micro-cell , the concentration has no change .

  4. 通过模拟闭塞腐蚀电池试验及室内间浸挂片试验,对常用的Ni-Cr系和Mn系两类低合金船体结构钢的耐点蚀性能作了比较。

    The pit corrosion resistances of nickel-chromium series and manganese series low alloy structural hull steels were compared by simulating occluded corrosion cell tests and interval laboratory immersion corrosion tests .

  5. 采用铁屑和颗粒活性炭通过原电池反应产生的Fe2+离子取代FeSO4组成腐蚀电池Fenton工艺,采用该工艺对垃圾渗滤液进行预处理。

    Instead of using FeSO_ 4 for the traditional Fenton process , new state of Fe 2 + ions generated by corrosive cell process between iron scraps and granular activated carbon ( GAC ) were utilized to pretreat landfill leachate .

  6. 铁屑腐蚀电池在工业废水治理中的应用

    The application of iron chips CORROSIVE-CELL to the treatment of industrial wastewater

  7. 腐蚀电池-Fenton工艺用于垃圾渗滤液的预处理研究

    Pretreatment of landfill leachate with corrosive cell - Fenton process

  8. 小苏打水可以清洗腐蚀电池的两端。

    Clean corroded battery terminals with baking soda and water .

  9. 提出利用铁屑和烟道灰组成腐蚀电池,治理印染废水的方法。

    Study on the etching process of aluminum foil for electrolytic capacitor ;

  10. 腐蚀电池法处理印染废水

    Corrosion Application of Corrosive Cell Process in Treatment of Printing and Dyeing Wastewater

  11. 构成了由缝隙内金属表面(活性区)-电解质溶液-缝隙外金属表面(钝化区)组成的宏观腐蚀电池。

    The macro corrosive battery is formed among metal inter surface , electrolyte solution and outer surface .

  12. 腐蚀电池法强化后续生化工艺处理印染废水

    Using corrosive cell process to strengthen the follow-up biochemical processing for the treatment of printing and dyeing wastewater

  13. 利用铁屑腐蚀电池原位修复被氯代烃污染地下水的研究进展

    Advances in technology of applying iron filings CORROSIVE-CELL to the in-situ remediation of groundwater polluted by chlorinated hydrocarbons

  14. 但硫化铁膜一旦破损,就可能形成电偶型腐蚀电池。

    Once the FeS scale is compromised , the chance of developing a galvanic-type corrosion cell is increased .

  15. 阵列电极技术研究钢筋在混凝土中宏观腐蚀电池与微观腐蚀电池相互作用

    Investigation on Interaction of Corrosion Macrocell and Microcell of Reinforced Steel in Concrete by an Array Electrode Technique

  16. 局部腐蚀电池中阴极和闭塞阳极之间电位差及其组份的研究

    A study of the components of the potential difference between the cathode and the occluded anode in localized corrosion system

  17. 选择两种具有不同类型硫化物夹杂的碳钢,通过模拟蚀孔的闭塞腐蚀电池试验,研究了它们在人工海水中的孔蚀扩展行为。

    Using OCC simulation test , behavior of pitting propagation of two carbon steels for shipbuilding with different sulfide inclusions in synthetic seawater was studied .

  18. 在试验后期,划痕附近的高速电弧喷涂层和划痕处的氧与水形成腐蚀电池。

    In the later stage , the corrosion cells are forming by the metallic coating near the scratch with the oxygen and water in the scratch .

  19. 选择三种典型的碳钢、低合金钢,通过极化试验比较了它们之间的点蚀诱发敏感性和模拟孔蚀的“闭塞腐蚀电池”,试验研究了它们之间的孔蚀扩展行为。

    Their susceptibility to pitting has been compared by means of polarization test , and their behavior of pitting propagation has been studied with OCC simulation test .

  20. 异性土壤所形成的腐蚀电池,具有强烈腐蚀的特点,类似这种地带应在勘察设计时尽量避开,绕道而行。

    The corrosive cells formed in non-isotropic soil are characterized by their intense corrosive nature , and so the like zone should be kept away as much as possible in survey and design .

  21. 从腐蚀电池反应的基本原理出发,以腐蚀电池反应中的溶铁量作为外部监控指标,来探求腐蚀电池反应的最佳工艺条件。

    Based on the basic principle of corrosive cell process , and by monitoring the dissolved iron capacity in corrosive cell reaction ( CCR ), the optimum technological conditions of the CCR are studied .

  22. 这种氧化反应在本质上大多属于电化学腐蚀电池效应,其发生的必要条件是环境相对湿度达到或大于临界湿度。

    Most of the oxidation are battery effect by electrochemical corrosion in their nature . The necessary conditions for the battery effect is that the ambient relative humidity reaches or exceeds the critical relative humidity .

  23. 受腐蚀例句电池酸腐蚀了发动机。

    Battery acid had eroded the engine .

  24. 电池的转换效率低于未经腐蚀的电池和经硝酸磷酸腐蚀的电池。

    Cells pretreatment with bromine-methanol showed lower conversion efficiencies than these with nitric-phosphoric acid etch or without pretreatment .

  25. 由于锌电极表面的不均匀性,从而形成许多的腐蚀微电池。

    Due to the non-uniform of face of zinc electrode , a lot of micro batteries will be formed in the zinc electrode .

  26. 用腐蚀探测电池研究了温度、湿度和盐沉积量等腐蚀因素对大气腐蚀性的影响。

    The influences of temperature , relative humidity ( RH ) and the salt deposit on atmospheric corrosivity were investigated by means of corrosion detective cells .

  27. 但是镍含量过高,都会使涂层发生腐蚀微电池作用,产生不利影响。

    But when the nickel content is too high , the coating will occur the corrosion micro-cell function and have a negative impact on the coating .

  28. 抛光能降低银的表面粗糙度,但是抛光过程中形成的加工变质层和残留抛光剂加速了腐蚀原电池的形成,使银币的腐蚀变色速度加快。

    Polishing can reduce the surface roughness of silver flan , but the polishing affected layer and residual polishing agent accelerate the formation of corrosion battery , which results the acceleration of silver tarnishing .

  29. 在工况环境下,由于PEMFC频繁的启动/停止、负载的变化、湿度的变化等,引起电池内部电势分布异常,导致阴阳极催化层产生局部腐蚀,使得电池性能衰减。

    In working condition , because of PEMFC frequent start-up and shut-down , load changes , humidity changes , causing abnormal distribution of electric potential inside the battery , resulting in anode and cathode catalyst layer produced localized corrosion , lead to the Fuel Cells performance degradation .

  30. 硝酸-磷酸混合液腐蚀过的电池转换效率比溴甲醇腐蚀的高。

    The conversion efficiency of CdTe solar cells etched by nitric-phosphoric mixture is higher than by Br_2-Methanol .