1) BN52021
银杏苦内酯B(BN52021)
2) ginkgo
银杏
1.
Study on the enzymatic processing technology of instant ginkgo powder;
酶解法生产银杏粉的工艺及产品应用的研究
2.
Application of PVA resin in the extractions of ginkgo;
PVA/Gelatin复合树脂在银杏提取物中的应用
3) Ginkgo biloba
银杏
1.
Effects of Elevated O_3 on the Volatile Organic Compounds Emit from Ginkgo biloba and Pinus tabulaeformis;
O_3浓度升高对银杏及油松BVOCs排放的影响
2.
Environmental quality appraisement of the GAP experiment demonstration base of Ginkgo biloba in Puding county of Guizhou province;
贵州普定银杏GAP试验示范基地环境质量评价
3.
Extracting Flavonoids from Ginkgo biloba Leaves by Two Steps of Release and Hot-extraction;
解吸-热提两步法提取银杏叶中的黄酮研究
4) gingko
银杏
1.
Analysis of finite element method for threshing gingko fruit shell;
银杏脱壳的有限元受力分析
2.
Determination of Flavones from Gingko Leaves in Nanxiong by HPLC;
南雄银杏叶中银杏黄酮含量的HPLC测定
5) Ginkgo biloba L
银杏
1.
Effects of elevated atmospheric CO_2 and O_3 on Hill activity and Ca~(2+)/Mg~(2+)-ATPase activity of Ginkgo biloba L.;
CO_2和O_3体积分数升高对银杏希尔反应活力和叶绿体ATP酶活性的影响
2.
Acid hydrolysis condition of Ginkgo biloba L.flavonoid glycosides;
酸法水解银杏黄酮的工艺条件
3.
Effect of several factors in extracting polysaccharides from exopleura of Ginkgo biloba L.;
银杏外种皮多糖浸提的影响因素分析
6) Ginkgo Biloba Linn
银杏
1.
Study on Determination of Trace Cadmium in Ginkgo Biloba Linn by Nano-TiO_2 Preconcentration-Single-Sweep Polarography;
纳米TiO_2富集-单扫描极谱法测定银杏中痕量镉含量的研究
2.
Research Progress on Extraction and Separation Techniques of Functional Activated Compositions in Ginkgo biloba Linn;
银杏功能活性成分提取分离技术研究进展
3.
Molecular Identification of 16 Main Cultivars of Ginkgo biloba Linn.;
银杏16个主要栽培品种的分子鉴别
参考词条
补充资料:Brenthol BN(卜内门)
分子式:C21H15NO2
分子量:313.34
CAS号:135-64-8
性质:该品呈米黄色粉状,熔点为243-244℃。能溶于氯苯,不溶于水和纯碱溶液,于氢氧化钠溶液中呈黄色。
制备方法:先将2,3-酸与氢氧化钠与氯苯成盐,再与吐氏酸、三氯化磷进行缩合,而后用磷酸二氢钠水解、中和与后处理即得成品。原料消耗(kg/t)2,3-酸(100%) 750吐氏酸(100%) 900三氯化磷(100%) 230纯碱(98%) 388氯苯(98%) 410
用途:主要用作棉织物染色和印花的打底剂。并可以代替色酸AS使用。
分子量:313.34
CAS号:135-64-8
性质:该品呈米黄色粉状,熔点为243-244℃。能溶于氯苯,不溶于水和纯碱溶液,于氢氧化钠溶液中呈黄色。
制备方法:先将2,3-酸与氢氧化钠与氯苯成盐,再与吐氏酸、三氯化磷进行缩合,而后用磷酸二氢钠水解、中和与后处理即得成品。原料消耗(kg/t)2,3-酸(100%) 750吐氏酸(100%) 900三氯化磷(100%) 230纯碱(98%) 388氯苯(98%) 410
用途:主要用作棉织物染色和印花的打底剂。并可以代替色酸AS使用。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。