p-nitrophenol

对硝基苯酚

化学



双语例句

  1. Electrochemical Reduction of P-nitrophenol on Copper Electrode Surface
    对硝基苯酚在铜电极上的电化学还原过程研究
  2. Electro-Catalytic Oxidation of P-Nitrophenol by Ti/ Sb-SnO_2 Doped with Rare Earth La Electrode
    稀土La掺杂Ti/Sb-SnO2电极电催化氧化对硝基苯酚
  3. Adsorption of p-nitrophenol on CN_x Nanotubes
    碳氮纳米管对对硝基苯酚的吸附研究
  4. Study on Supercritical/ Subcritical Water Oxidation of p-Nitrophenol Wastewater
    对硝基苯酚废水的超(近)临界水氧化研究
  5. Treatment of p-Nitrophenol Production Wastewater by Activated Carbon Fiber Adsorption
    活性碳纤维吸附处理对硝基苯酚生产废水
  6. Study on the Removal of p-nitrophenol in Wastewater with Activated Carbon
    活性炭脱除废水中对硝基苯酚的研究
  7. Adsorption Behavior of p-Nitrophenol from Water onto Activated Carbon Fiber
    活性炭纤维吸附水中对硝基苯酚的行为
  8. Catalytic Degradation of P-nitrophenol with Hydrogen Peroxide over Copper Hydrophosphate
    羟基磷酸铜催化降解对硝基苯酚的研究
  9. Study on electrocatalysis oxidation of p-nitrophenol in wastewater by using the manganese mineral-doped PbO_2 anode
    锰矿掺杂PbO2电极电催化氧化对硝基苯酚废水的研究
  10. The factors and mechanism of electro-catalysis oxidation of p-nitrophenol on sb-sno_2/ ti electrode
    Sb-SnO2/Ti电极对对硝基苯酚电催化氧化影响因素和机理研究
  11. A new process has been developed to synthesize p-aminophenol methyl ether from p-nitrophenol methyl ether by catalytic hydrogenation, using ammonia synthesis gas instead of pure hydrogen.
    采用合成氨厂氨合成气代替纯氢气催化氢化对硝基苯甲醚合成对氨基苯甲醚的新工艺,探讨了合成反应条件和对氨基苯甲醚收率的影响规律。
  12. P-Nitrophenol Hydrogenation over a Novel Ni/ TiO_2 Catalyst
    新型Ni/TiO2催化剂用于对硝基苯酚催化加氢
  13. Study on Catalytic Decomposition of p-nitrophenol by Electro-Fenton-Like Reaction
    电解耦合类芬顿多相催化降解水中对硝基酚
  14. Removal of p-nitrophenol from wastewater by a microbial fuel cell
    微生物燃料电池对废水中对硝基苯酚的去除
  15. Study on the Properties of Microbial Degradation of p-Nitrophenol
    微生物降解对硝基苯酚的特性分析
  16. ( 2) p-nitrophenol catalytic hydrogenation method;
    对硝基苯酚催化加氢还原法;
  17. And the cation exchange capacities of sediments have almost no influence to the sorption of p-nitrophenol.
    阳离子交换容量CEC对沉积物吸附对硝基苯酚几乎没有影响。
  18. Simultaneous Determination of o-Nitrophenol and p-Nitrophenol by Using Direct Potential Method
    直接电位法同时测定邻硝基苯酚和对硝基苯酚
  19. The thermodynamics and mechanisms of sorption of p-nitrophenol to a series of organobentonites from water were investigated.
    研究了水溶液中有机膨润土吸附p-硝基苯酚过程的热力学及机理。
  20. Elman recurrent neural network ( ERNN) was applied to study the simultaneous quantitative analysis of seriously overlapped spectra of a p-nitrophenol, o-nitrophenol and 2,4-dinitrophenol system. The multivariate linear regression ( MLR) method was also applied in this study for comparison.
    应用Elman回归神经网络(ERNN)对光谱严重重叠的对硝基苯酚,邻硝基苯酚和2,4二硝基苯酚体系的同时定量测定进行了研究,并与多变量线性回归(MLR)法作了比较。
  21. The sorption behaviors for dual-cation organobentonites to sorb aniline, p-nitrophenol, 2,4-dichlorophenol from water were investigated.
    探讨了双阳离子有机膨润土对水中苯胺、p-硝基苯酚、2,4-二氯酚的吸附行为;
  22. Determination of p-Nitrophenol in Water and Waste Water by Reduction Fluorimetry
    还原荧光法测定水和废水中的对硝基酚
  23. Study on Property of the Modified Coal-based Activated Carbon to Adsorb P-nitrophenol
    改性煤基活性炭吸附对硝基苯酚的研究
  24. Simultaneous Determination of p-Nitrophenol, o-Nitrophenol and 2,4-Dinitrophenol in Mixture by Full Spectrum Techniques
    全光谱技术同时测定混合物中对-硝基苯酚、邻-硝基苯酚和2,4-二硝基苯酚
  25. Thermodynamics of Ionization of Weak Electrolyte ⅰ. The System of p-Nitrophenol NaCl Water
    弱电解质解离热力学研究Ⅰ.对硝基苯酚-NaCl-水体系
  26. P3 can grow with p-nitrophenol as the sole carbon and nitrogen source.
    P3,该菌能够以对硝基苯酚为唯一碳源和氮源进行生长。
  27. The maximum adsorption capacity for p-nitrophenol is 137.74mg · g-1.
    吸附剂对对硝基苯酚的最大吸附容量为137.74mg·g-1。
  28. The photocatalytic activity of the C60/ TiO2 nanocomposites as investigated by using p-nitrophenol as a model pollutant under UV and visible light irradiation, respectively.
    以对硝基苯酚为模型污染物,分别考察了在紫外光和可见光照射下,C60/TiO2复合光催化剂的降解活性。