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- bismuth glycyrrhetate 甘草酸铋
- Bismuth glycyrrhetate powder 甘草酸铋散
- Easily hydrolyze to produce basic bismuth nitrate. 易水解生产碱式硝酸铋。
- Brass, copper, stainless steel, bismuth, and lead are all suitable. 黄铜、铜、不锈钢、铋及铅都是适合的。
- Our samples were prepared by thermal oxidizing bismuth films. 热氧化不够或低速率蒸发形成薄膜富铋,出现无定型或其它相结构,光学吸收限变宽,移向低能处。
- Bismuth is the first by Agricola clear it is a metal. 铋是由阿格里科拉首先明确它是一种金属的。
- Bismuth alloys can contain a small amount or a large amount of bismuth. 铋合金可以含有少量或较多的铋。
- Bismuth does lower the melting point and improves wetting but has limitations. 铋确实能够降低熔点,并提高熔湿特性,但是它也具有局限性。
- Generally, solder alloys with more than about 8% bismuth will be brittle. 一般来说,铋含量超过8%25的焊料合金将会变脆。
- Description:Bismuth subcarbonate is the the white powder,no smell or taste. 形状:碱式碳酸铋为无味无臭的白色粉末。
- Conclusion Bismuth potassium glycyrrhizate had antiulcer effect in rats. 结论甘草酸铋钾能有效地治疗胃溃疡。
- The common drugs APIs including the Calcium Folinate and Bismuth aluminate. 主要产品(原料药):亚叶酸钙、甲氨蝶呤、铝酸铋、异环磷酰胺、左亚叶酸钙、盐酸丙卡巴肼、美司那。
- Determination of bismuth content.Diethyldithiocarbamate spectrometric method. 英文名称: Copper and copper alloys.
- This method can be used to measured the ammonium glycyrrhetate content speedily and exactly. 实践证明这种方法能够迅速、准确地确定样品中的甘草酸铵的含量。
- Objective To study the liver-protection effects of compound ammonium glycyrrhetate in chemotherapy of TB patients. 目的探讨强力宁在肺结核化学治疗中的护肝作用。
- Then bismuth in lead anode mud was determined by EDTA complexometric titration. 王水溶样,氢溴酸除锡,直接用EDTA容量法测定铅阳极泥中高含量的铋。
- Objective:To observe the clinical effect and safety of diammonium glycyrrhetate(DG) in the treatment of psoriasis vulgaris. 目的:观察甘草酸二铵治疗寻常型银屑病的临床疗效和安全性。
- The reaction of injected compound Ammonium Glycyrrhetate on Guinea pig irritability, hemolysis andstimulation on blood vessel of rabbit was studied. 本试验对注射用复方甘草酸单铵进行了过敏性、溶血性和血管刺激性试验。
- It was vital to show that the radioactive property was connected with traces of elements that were neither bismuth nor barium. 证明放射性属性与非科或非钡的元素轨迹相关是非常重要的。
- Methyl Glycyrrhetate Acetate was synthesized successfully by hydrothermal method with Glycyrrhizic Acid while using Heteropoly Acid as catalyst. 以甘草酸为原料,以杂多酸作为催化剂,采用水热法合成了乙酰甘草次酸甲酯;