• 目的研究黄姜皂素清洁生产工艺

    Objective To study the clean production technology of diosgenin.

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  • 不同单株根状产量皂素含量不同。

    The yield and diosgenin content of underground stem were different in different plants.

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  • 皂素世界医药学方面有重要作用

    Diosgenin plays an important role in world medicine field.

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  • 皂素提取纯化工艺进行研究。

    A simple purification method for crude tea saponin was described.

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  • 皂素合成甾体激素类药物重要原料

    Diosgenin is important raw material of making steroidal medicine.

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  • 因此皂素废水治理必须综合利用道路

    So the administration of saponin wastewater should be tackled in a comprehensive way.

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  • 目的研究茶油枯中皂素分离、提取工艺

    Objective: To study the technology of extracting tea saponin from the pressed tea seed.

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  • 主要成份:代代花,茯苓,甲壳素,清皂素

    Main compositions Sour orange, tuckahoe, carapace element, fat - removing saponin etc.

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  • 发明涉及一种复合皂素及其制备方法用途

    The invention relates to composite tea saponin, a preparation method thereof and use thereof.

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  • 分析了皂素生产废水中的主要污染物种类含量

    The kinds of pollutant and the content were analysed in the saponin productive process.

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  • 发明提供了黄姜皂素工业酸液的回用方法

    The invention provides a method for reusing yellow-ginger saponin industrial waste acid solution.

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  • 试验研究为皂素酸洗废水彻底治理奠定试验基础

    This experiment founded the testing basis for the thoroughly disposal of the acidic dioscorea wastewater.

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  • 黄姜皂素生产废渣是黄姜提取薯蓣皂素固体废弃物

    The diosgenin solid waste originate from Yellow Ginger after extracting diosgenin.

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  • 目的观察皂素对壬苯醇醚(N 9)的杀精增效作用

    Objective: To study the effect of tea saponin in ameliorating nonoxynol (N-9) spermicidal action in vitro.

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  • 目的观察皂素局灶性脑缺血再灌注损伤保护作用

    Objective: To observe the protective effect of tea saponin on Focal cerebral ischemia-reperfusion injury.

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  • 目的研究光合细菌皂素生产废水处理效果及其影响因素

    Aim to study the effects and influence factors of treating wastewater from saponin manufacturing by photosynthetic bacteria.

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  • 这些结果表明,皂素可以抑制原虫从而抑制甲烷生成

    Tea saponin inhibited protozoa and then reduced methane production, while it did not have significant effect on methanogens.

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  • 所以,研究合理可行黄姜皂素生产废水处理方案事不宜迟。

    So reasonable and feasible schemes for saponin wastewater treatment should be carried out as soon as possible.

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  • 采用AB - 8大孔吸附树脂皂素成品进行纯化,提取标准

    After purifying the finished tea saponin with macroporous adsorption resin AB-8, we extracted the standard samples.

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  • 通过小型批量试验酵母菌处理皂素生产废水技术条件进行了研究。

    With small batch experiments, the technical conditions for treatment of saponin manufacturing wastewater by yeast were studied.

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  • 分析了皂素生产废水中的主要污染物种类含量提出污水治理对策

    The kinds of pollutant and the content was analysed in the saponin productive process, and put forwarded the treatment countermeasure.

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  • 皂素生产废水种酸性高浓度有机废水,富含淀粉水解产生大量糖类

    Saponin manufacturing wastewater is of high acidic organic and with plenty of carbohydrates produced in the process of amylum hydrolysis.

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  • 发明公开了一种烯醇和皂素复配杀菌组合物制备方法应用

    The invention discloses a sterilizing composite compounded by diniconazole and tea saponin, a preparation method and the application thereof.

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  • 本文系统地介绍了油茶皂素加工利用,并皂素应用前途提出了倡议。

    This paper system represent make and use of sapogenin, at once for future of sapogenin said a number of promotion.

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  • 本文报导油茶籽皂素理化特性及其皂素皂素理化特性的比较

    The present paper reported the physicochemical characteristics of saponin from the seed of Camellia oleifera and the comparison of these characteristics with theasaponin and saponin white.

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  • 皂素资源丰富价格低廉对环境无污染,是具有开发前景的植物杀螺剂。

    Tea saponin's easy availability, low price, botanical origin, and non-pollution characteristic favor its broad developing prospects.

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  • 我们提取油茶籽皂素具有水溶性硬水能力泡沫持久性好等特点。

    The saponin solated from the seed of Camellia oleifera possessed good water solubility, strong resistance to hard water and excellent foaming persistence.

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  • 结论双分离法为黄姜皂素清洁生产工艺资源利用程度高,且生产周期缩短

    ConclusionThe double-separation is clean production technology of diosgenin. The utilization rate of yam increases. Furthermore, the period of this process is greatly shorter than pre-fermentation.

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  • 解决黄姜皂素残渣处置问题,可以节约煤炭资源,降低燃烧污染物排放

    The new process not only has solved the problem of handling of the saponin residue of yam but also economize coal and reduce pollutants emission.

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  • 结论我国资源十分丰富,皂素进行开发、应用前景广阔经济效益明显

    Conclusion: There is abundant tea resource in China, so the development of the tea saponin may have bright future and remarkable economic benefit.

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