甲基红
- 名methyl red
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TiO2光电化学电池催化氧化甲基红
Photocatalytic Oxidation of Methyl Red by TiO_2 in a Photoelectrochemical Cell
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纳米TiO2-MoO3的制备及对甲基红的催化降解
Preparation of nanometer titania-molybdenum trioxide and its application in degradation of methyl red
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甲基红反应阳性,均能轻微产生H2S。
Methyl red experiment was positive and they were able to slightly produce H_2S .
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新生MnO2对甲基红的吸附性能研究
Study on the adsorption performance of fresh MnO_2 for methyl red
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研究发现,在硫酸介质中,Fe(Ⅲ)能催化H2O2与甲基红之间的褪色反应;
It has been observed that resorcinol can sensitively inhibit the reaction of H2 O2 discoloration of methyl red catalyzed by Fe (ⅲ) in dilute sulfuric acid solution .
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随着转速和时间的增加,降解率不断提高,6h后球磨甲基红质量分数为0.25%的MgO、CaO磨料,降解率分别可达78%和65%;
The degradation ratio increases with grinding time and could reach 78 % and 65 % at 6 h grinding for MgO and CaO respectively .
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通过两步溶胶凝胶法成功制备了TiO2/SiO2介孔复合物,并且研究了在不同热处理温度下对甲基红的光降解作用。
TiO2 / SiO2 composite were synthesized successfully by two step sol-gel method and its effect on the optical degradation of methyl red under heat treatment at different temperatures was studied .
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上述结果说明LDHs作为一个分子容器,对甲基红的异构反应起到了限域作用。
There results indicate that LDHs function as molecular container for MR and have restricted geometry effect on interlayer guests .
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在H2SO4介质中,Fe(Ⅲ)能催化H2O2与甲基红之间的褪色反应;加入青霉胺后,青霉胺又能灵敏地阻抑该氧化褪色反应,从而建立青霉胺的测定方法。
A new method for the determination of Penicillamine was proposed . It was based on the inhibitory effect of penicillamine on discoloring reaction of H_2O_2 and methyl red catalyzed by Fe ~ ( 3 + ) in dilute sulfuric acid solution .
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制备了聚甲基红膜修饰电极(PMRE),采用循环伏安法、计时库仑法及交流阻抗法对该膜电极的电化学性质进行了初步研究。
The fabrication and electrochemical behaviors of poly methyl red film modified glass carbon electrodes ( PMRE ) were studied .
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此外,添加TiO2和(NH4)2S2O8,分别利用其热催化效应和氧化性可提高甲基红的降解程度,最高降解率可达91%。
Furthermore , the degradation of methyl red could be improved by the heating catalysis effect of TiO2 and oxidation of ( NH4 ) 2S2O8.With the addition of TiO2 and ( NH4 ) 2S2O8 , the degradation of methyl red ultimately reaches 91 % at 6 h grounding .
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催化氧化有机染料甲基红脱色的研究
Study on Decolorization of Organic Dyestuff Methyl Red by Catalytic Oxidation
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无外场作用下掺甲基红向列液晶光折变特性实验研究
Photorefractive Effects in Methyl-red Doped Nematic Liquid Crystal without Applied Field
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酸性溶液中甲基红在钢表面的吸附
Adsorption of methyl red on steel interface in acidic solutions
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酸性溶液中甲基红对钢的缓蚀作用
Inhibitory effect of methyl red on Corrosion of steel in acidic solutions
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溴酸钾-甲基红体系测定水样中微量甲醛的研究
Determination of Trace Formaldehyde in Water by Catalytic Kinetic Spectrophotometry of Methyl Red-KBrO_3
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作业场所空气中溴素的甲基红褪色分光光度测定法
Determination of bromine in workplace air with spectrophotometry of methyl red fading reaction
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短路阴、阳极促进光催化降解甲基红
Enhancement of photocatalysis oxidation of methyl red by short-circuit of cathode and photoanode
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阻抑甲基红褪色光度法测定稀土矿石中痕量铌
Determination of trace niobium in rare earth mineral by inhibiting methyl red discoloring spectrophotometry
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亚硝酸根的催化动力学分析法Ⅴ.甲基红-溴酸钾体系
Determination of Nitrite by Catalytic Kinetic Analysis V. The System of Methyl Red-Potassium Bromate
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系统振动对甲基红掺杂聚乙烯醇薄膜衍射效率的影响
Effect of vibration of setup on the diffraction efficiency of methyl-red-doped polyvinyl alcohol film
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机械化学法降解甲基红
Degradation of methyl red by mechanochemistry method
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甲基红合成的新方法
Novel method of synthesis for methyl red
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过硫酸钾氧化甲基红催化光度法测定痕量银
Oxidation of Methyl Red with Potassium Persulfate
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高碘酸钾与甲基红的反应可为亚硝酸根所催化。
The reaction of potassium periodate and orange red can be catalyzed by nitrous ions .
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同时通过对降解过程的跟踪,对甲基红降解机理进行了初步探讨。
Meanwhile , Degradation mechanism of methyl red was preliminarily studied on by degradation process tracking .
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聚甲基红膜修饰电极的电化学性质及其对盐酸吡哆辛的伏安测定
Electrochemical Behaviour of Poly Methyl Red Film Modified Electrode and the Voltammetric Determination of Pyridoxal Hydrochloride
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萃取分光光度法测定工业废气中的游离溴溴氧化甲基红褪色光度法测定大气中游离溴
Determination of free bromine in air by decoloration oxidation action of methyl red with free bromine
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甲基红染料掺杂的聚乙烯醇薄膜光存储特性的实验研究
Experimental study on the optical storage properties of polyvinyl alcohol films doped with methyl red dyes
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以室内散光和日光为光源,研究了其对模拟染料废水甲基红溶液的光催化脱色降解性。
The characteristic of its photocatalytic degradation to methyl red aqueous solution was investigated with indoor scattered light and outdoor sunlight .