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Separation of Less Satisfactory Surface Active Antibiotic(penicillin G)From Dilute Solution Using Foam Separation Method

机译:用泡沫分离法从稀释溶液中分离出令人满意的表面活性抗生素青霉素G

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Penicillin-G is the drug of choice for infection caused by organisms suspectible to it.In case of streptococcal infection(like pharyngitis,scarlet fever),staphylococcus infection,pneumococcus infection,diphtheria,tetanus and gas gangrene,anthrax,actinomycosis and rat bite fever penicillin-G is widely used.Separation and purification of penicillin-G from a mixture of other components is common and essential step in pharmaceutical industry.Separation and purification of drug component from a mixture of components,separation of enantiomeric drugs mixture,separation of chemical constituents from plant source and removal of drug components from wastewater can be carried out through foam separation method.The aim of this work is to study performance criteria of separation of penicillin-G from an aqueous solution by controlling of different variables and using two type of surfactants in foam separation method.The result showed that penicillin-G can be easily separated from dilute solution of drug mixture in a short time.The influence of operatives variables including concentration of surface active agent,pH,superficial gas velocity(SGV)and recovery of drug were investigated.The optimum separation has been set as follows:concentration of surface active agent tetradecyl trimethyl ammonium bromide(2.25 mM)and dodecylamine(2.25 mM),pH 7,superficial gas velocity 0.03 cm/s,% of drug recovery was foundas 84.20 and 86.78,respectively.The unique advantage of the present work relative to other reported method is the higher separation efficiency at lowest cost.
机译:青霉素-G是可疑生物引起的感染的首选药物。如果发生链球菌感染(如咽炎,猩红热),葡萄球菌感染,肺炎球菌感染,白喉,破伤风和气体坏疽,炭疽,放线菌病和大鼠咬热青霉素-G是广泛使用的。从其他组分的混合物中分离和纯化青霉素-G是制药工业中的常见步骤和必不可少的步骤。从组分的混合物中分离和纯化药物组分,对映体药物混合物的分离,化学药品的分离植物来源成分和废水中药物成分的去除可通过泡沫分离法进行。这项工作的目的是通过控制不同的变量并使用两种类型的方法研究从水溶液中分离青霉素-G的性能标准。泡沫分离法中的表面活性剂。结果表明,青霉素-G可以很容易地从稀溶液中分离出来。研究了表面活性剂浓度,pH,表观气体流速(SGV)和药物回收率等操作变量对药物分离率的影响。最佳分离方法如下:表面活性剂十四烷基三甲基醚的浓度溴化铵(2.25 mM)和十二烷基胺(2.25 mM),pH 7,表面气体流速0.03 cm / s,发现药物回收率分别为84.20和86.78。相对于其他报道的方法,本研究的独特优势是以最低的成本获得更高的分离效率。

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