• 脂类催化氧化作了全面深入研究

    Catalytic oxidation of lipids is studied comprehensively and deeply.

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  • 发现它们具有催化氧化能力。

    They can catalyze the oxidation of cyclohexene.

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  • 研究了非均催化氧化处理焦化废水效果

    The effects of treating coking wastewater by heterogeneous catalytic oxidation process were studied.

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  • 综述了巴豆催化氧化合成巴豆研究进展。

    It was used for catalytic oxidation of crotonic aldehyde to crotonic acid.

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  • 甲醇烃类气体相中催化氧化制取。

    It is made by catalytic oxidation of either methanol or hydrocarbon gases in the vapor phase.

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  • 废水经湿催化氧化可以满足直接排放的要求。

    After catalytic wet air oxidation treatment, the waste water can be discharged directly.

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  • 初步探讨了非均催化氧化降解废水中的污染物机理

    The mechanism of pollutant degradation in wastewater by heterogeneous catalytic oxidation is primarily explored.

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  • 研究了紫外光催化氧化法对垃圾填埋场滤液降解机理

    The degradation mechanism of infiltration wastewater from sanitary landfill by photocatalysis oxidation is studied.

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  • 苯酚催化氧化炭的催化氧化可能遵循不同的反应历程

    Phenol oxidation and catalyst - sorbent ignition may proceed bt different reaction mechanisms.

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  • 催化氧化催化分散回收负载技术成熟

    As for photocatalytic oxidation, the dispersion, recycling and loading technology of catalyzer has not been mature so far.

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  • 本文简要描述催化氧化处理废水原理及其机理

    In this paper, the principle and mechanism of treating cyanide-containing wastewater by catalytic oxidation process are outlined.

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  • 催化氧化技术近年催化学科一个十分活跃的研究领域

    Photocatalytic oxidation technique is a very active field in the catalysisdiscipline in recent years.

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  • 用紫外可见光谱进行催化氧化处理苯酚模拟废水动力学研究

    The study of reaction kinetics of catalyst oxidation phenol simulation wastewater was done through ultraviolet-visible spectrum.

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  • 酪氨酸酶有催化氧化l -酪氨酸L -多巴生成黑色素作用

    Tyrosinase performs action for catalytic oxidation of L-tyrosine and L-dopa to form melanin.

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  • 生产清洁能源,采用光催化氧化催化裂化汽油进行脱硫研究

    To produce clean energy, the study on oxidation desulfurization from catalytic cracking gasoline by photocatalysis is investigated.

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  • 以太阳光光源催化氧化技术一种清洁节能污水处理技术。

    Solar photocatalysis was one of the technologies with clean and economizing energy for the wastewater treatment.

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  • 目前应用催化氧化研究处理有机物污染物的种类已达300

    At present, there are more than 300 kinds of pollutant organics, which can be degraded by photocatalysis method.

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  • 目前而言量子效率、反应速度缺点制约了光催化氧化应用

    However, it has some disadvantages keeping back its application, such as low quantum efficiency, low reaction rate.

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  • 近几年来,国外广泛地用于催化氧化醇类合成羰基化合物研究

    In recent years, it was extensively used to investigate the synthesis of many carbonyl compounds by catalytic oxidation of alcohols at abroad.

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  • 其中液液萃取技术相结合催化氧化脱硫具潜力深度脱硫法之一。

    Selective catalytic oxidation combined with extraction is one of the most promising deep desulfurization methods.

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  • 臭氧氧化采用多相催化氧化法,处理煤制气厂焦化厂的含酚废水

    Then phenol and cyanide wastewater is treated through heterogeneous catalytic oxidation by these catalysts, ozone as oxidant.

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  • 多管反应器使用多管反应器的催化氧化应用于多管反应器的启动方法

    Multipipe reactor, vapor phase catalytic oxidation method using multipipe reactor, and start-up method applied to multipipe reactor.

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  • 催化氧化技术近年来研究一个热点领域,而光催化则是技术的关键所在。

    Photochemical catalytic oxidation technology is a investigative hotspot of waste water treatment, and the photocatalysts is the key of this technology.

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  • 文章介绍了丙酮市场应用开发前景工业催化氧化直接生产丙酮的工艺流程。

    The article Introduces market application, and develop prospect of acetone as well as industrial USES of catalytic oxidation and direct oxidation of propylene to acetone.

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  • XPS实验结果证明活性炭表面元素电子结构含量催化氧化活性显著的影响。

    XPS data reveal that the state and the content of nitrogen element in the surface layers correlate fairly with the catalytic activity.

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  • 研究了湿式催化氧化CWO)处理高浓度有机废水中催化选择实验条件优化

    Two questions of catalytic wet oxidation(CWO)under normal pressure have been studied:the selection of catalysts and the optimization of experimental conditions.

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  • 研究了湿式催化氧化CWO)处理高浓度有机废水中催化选择实验条件优化

    Two questions of catalytic wet oxidation(CWO)under normal pressure have been studied:the selection of catalysts and the optimization of experimental conditions.

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