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1)  Sodium bromide
钠溴
2)  sodium hypobromite
次溴酸钠
1.
Using thymol-sodium hypobromite as chromogenic reagent,and extracting the colour formed with butanol,a spectrophotometric method for the determination of arginine in fermentation broth was studied.
以百里酚的次溴酸钠溶液为显色剂,用正丁醇萃取显色产物,以分光光度计比色测定有机相的吸光度值。
3)  sodium bromate
溴酸钠
1.
In the presence of acetic acid and polyethylene glycol,anthracene reacts with ceric ammonium nitrate and sodium bromate to form 1-nitroanthraquinone.
在醋酸、聚乙二醇存在下,蒽与硝酸铈铵和溴酸钠反应生成1-硝基蒽醌。
2.
In this presence of water and polyethylene glycol, anthracene reacts with ceric ammonium nitrate and sodium bromate to form anthrone.
在水、聚乙二醇存在下,蒽与硝酸铈铵(CAN)和溴酸钠反应生成蒽酮。
3.
In the presence of acetic acid and polyethylene glycol,2-naphthol reacts with ammonium ceric nitrate and sodium bromate to form 1,2-naphthoquinone.
在醋酸、聚乙二醇存在下,2萘酚与硝酸铈铵和溴酸钠反应生成1,2-萘醌。
4)  sodium bromide
溴化钠
1.
The obtained SBF then reacted by oxy-bromation at room temperature with sodium bromide as bromo source, H2O2 as oxidant and 1,2-dichloroethane as solvent to produce 2,2′,7,7′-tetrabromo-9,9′-spirobifluorene (TBSBF).
以2-溴联苯的Grignard试剂和9-芴酮反应制备9-(2-联苯基)-9-芴醇,经关环反应制备了9,9′-螺二芴(SBF),并以溴化钠为溴源、过氧化氢为氧化剂、1,2-二氯乙烷为溶剂,通过SBF的氧化溴化反应制备了2,2′,7,7′-四溴-9,9′-螺二芴(TBSBF)。
2.
The oxybromination of anisole was investigated with sodium bromide as bromo source and oxygen as oxidant.
以溴化钠为溴源,氧气为氧化剂进行的苯甲醚的催化氧化溴代反应。
3.
The experimental study of sodium bromide wastewater treatment was done with electrodialysis process, the results indicated that the sodium solution can be desalted from 1.
本文采用电渗析法对溴化钠废水溶液的处理进行了试验研究。
5)  bromosulfophthalein [,brəumə,sʌlfəuf'θæliin]
溴磺肽钠
1.
Aim:To conduct in vivo and in vitro investigations of the effects of bromosulfophthalein(BSP) on trans-resveratrol(TR) absorption,and to study the possible role of drug transporters in TR intestinal absorption.
目的:通过体内和体外模型研究多药耐药相关蛋白(Mrp-2)外排底物溴磺肽钠对反式白藜芦醇(trans-resvera-trol,TR)肠道吸收的影响,并对转运体在TR肠道吸收中的作用进行研究。
6)  Sodium bromite
亚溴酸钠
补充资料:钠溴
NaBr    分子量102.90
    性质  无色等轴晶系结晶体或白色颗粒性粉末。密度3.203g/cm3。熔点755℃。无嗅,味咸而稍苦。空气中易吸收水分而结块。温度高于50.2℃时,溶液中析出溴化钠晶体即为无水物。低于502℃时则生成二水物。二水物为无色单斜晶系结晶体。密度2.176g/cm3。熔点51℃。加热至51℃以上失水。易溶于水,水溶液呈中性,有导电性,微溶于醇。其溴离子可被氟、氯所取代。酸性条件下也能与氧进行氧化,游离出溴可与稀硫酸反应生成溴化氢。
    应用  主要用于配制感光胶片上的感光液。医药工业用于生产利尿剂和加强大脑皮层抑制过程作用的镇静剂。香料工业用于生产合成香料。印染工业用作溴化剂。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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