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h2o2

  • 【医】【=hydrogen peroxide】过氧化氢
h2o2h2o2
  1. The factors affecting strip and H2O2 oxidation treatment are discussed .

    分别讨论了影响汽提法和氧化法处理效果的各项因素。

  2. Effects of H2O2 on Decrease of Protein Content in Detached Wheat Leaves

    H2O2对离体小麦叶片中蛋白质含量下降的影响

  3. The influence of H2O2 and pH was discussed .

    研究探讨了降解亚甲基蓝时H2O2以及pH值的影响。

  4. Pretreatment of low temperature could induce resistance to lethal concentration of H2O2 .

    低温预处理可以诱导对致死浓度H2O2的抗性。

  5. In this paper , conventional H2O2 bleaching of Bamboo pulp are studied .

    对竹浆常规过氧化氢(H2O2)漂白工艺进行了研究。

  6. Determination method of H2O2 in atmospheric precipitation

    大气降水中H2O2的测定方法

  7. Result demonstrated that H2O2 has obvious dose relative toxicity to hippocampal cells in vitro .

    结果显示,过氧化氢对海马神经细胞具有明显的剂量相关毒性效应。

  8. Activity of related enzymes also changed with H2O2 , GSH contents changing in rape body .

    油菜体内的H2O2、GSH等含量的变化,亦引起了相关酶活性的变化。

  9. When added with H2O2 , the pigment will fade quickly .

    抗氧化能力较差,色素溶液加入H2O2后,迅速退色;

  10. H2O2 and iron porphyrins had great influence on conversion of the organics .

    Phe、H2O2和铁卟啉的配比对羟化反应的转化率有明显影响。

  11. Study on Decomposing Characteristics of Hydrogen Peroxide in UV / H2O2 / ferrioxalate System

    UV/H2O2/草酸铁体系中过氧化氢的分解特征

  12. Influence of pH . Fe2 + H2O2 on removing COD was discussed .

    讨论了pH值、H2O2的浓度、Fe2浓度对COD去除的影响。

  13. A Highly Stable and Sensitive H2O2 Biosensor Based on Nano-Au

    基于纳米金增稳、增敏的过氧化氢生物传感器研制

  14. PC12 cells were treated with H2O2 and glutamate respectively as oxidative stress damage cell model .

    本研究采用过氧化氢和谷氨酸纳作用于PC12细胞,成功的制作了氧化应激损伤的细胞模型。

  15. Enzyme Scouring and H2O2 Bleaching Process for Cotton Yarn

    全棉纱线酶煮氧漂工艺探讨

  16. Through tests , this paper makes more detailed analysis on the different functions of H2O2 with different concentration in degradation reaction .

    文章通过实验,对浓度不同的过氧化氢在苯酚降解反应中所起的不同作用进行了较为详细的分析。

  17. The results showed that proper quantities of surfactants and H2O2 promoted oil and grease degradation .

    结果表明:适量的表面活性剂和H2O2促进油脂的降解。

  18. Objective To study the role of H2O2 on ethanol suppress hepatocellular carcinoma ( HCC ) proliferation .

    目的探讨过氧化氢(H2O2)在乙醇抑制肝癌细胞增殖过程中的作用。

  19. Decreasing the catalytic decomposition of H2O2 during bleaching process is an important way to reduce the bleaching cost .

    减少漂白过程中H2O2的催化分解是降低漂白成本的重要途径。

  20. Further results showed that the endogenous H2O2 plays crucial roles in physiological or pathological process of bacterial cells .

    进一步的实验结果显示,上述病原菌内源产生的过氧化氢在细胞中具有重要的生理和病理学功能。

  21. Objective : Study on correlation between H2O2 scavenging system and flavonoids accumulation of Scutellaria baicalensis .

    目的:研究黄芩H2O2清除系统和黄酮类活性成分积累的相关性。

  22. Results : The expression of 8-oxo-dGTPase was increased significantly in lymphocytes damaged by H2O2 ;

    结果:人淋巴细胞经H2O2持续作用,其8-oxo-dGTPase表达的相对水平也明显增加;

  23. Conclusion All of these four kinds of flavonoid had protective effects on oxidative injury cell induced by H2O2 .

    结论四种化合物均对H2O2导致的细胞氧化损伤有防护作用。

  24. Low comcentration of H2O2 ( < 0.4 % ) could make the number of embryonic root increase .

    低浓度(小于0.4%)H2O2能够促使侧生胚根的伸长,增加胚根数;

  25. The relation between H2O2 and the apple fruits superficial scald during the storage were studied .

    本文研究了苹果贮藏期间虎皮病的发病规律与过氧化氢(H2O2)变化的相关性。试验表明,随着贮藏时间的延长虎皮病发病率逐渐增加。

  26. Methods : The model of O-2 and H2O2 damage to cultured rat cortical neuronal cells was used .

    方法:应用O-2和H2O2对培养大鼠皮层神经细胞损伤模型。

  27. The addition time , the quantity and addition methods of H2O2 had significant impact on the production of polysialic acid .

    H2O2可以有效地刺激聚唾液酸的合成,并且H2O2的添加时间、添加剂量以及添加方式均对聚唾液酸合成影响显著。

  28. The cells were synchronized by serum starvation before Rolipram and H2O2 treatment .

    细胞加药处理前采用血清饥饿法使之同步化。

  29. A kinetic model was proposed to quantify the H2O2 scavenging capacities of the antioxidants .

    并且提出了抗氧化剂对过氧化氢清除能力的动力学模型。

  30. Results showed that H2O2 significantly increased the olive tail moment ( P0.05 ), indicating an increased in DNA damage .

    彗星实验结果显示:H2O2能显著地增加olive尾含量(P0.05),即能显著增加DNA损伤。