Influence of Temperature and Pressure on the Evaporation of 6-Aminopenicillinic Acid

L. Aliwarga, Widhi Setyo Kusumo, Agung Pramono
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Abstract

6-aminopenicillinic acid (6-APA) is the raw materials for producing semi-synthetic penicillin. In commercial scale, penicillin G is conversed into 6-APA enzymatically by penicillin acylase. Due to the nature of equilibrium reaction, the products are in mixture solution of penicillin G, 6-APA, and phenil acetic acid (PAA). In order to purify the targetted 6-APA, steps of evaporation, crystallisation, and drying are thereby compulsory. In this research, the optimum operation conditions for model solution evaporation were observed. Operation variables, like temperature was varied in the range between 30-65°C at -100mmHg, and pressure was also set between -300 and -50mmHg at constant temperature of 50°C. The results showed that temperature is a dominant factor determining the yield of 6-APA, compared to vacuum pressure from -300 mmHg to -50 mmHg that provided similar yield value. This fact was supported by interpretation of the crystal’s purity for the pressure variation that overall was more than 90% (suggested the homogeneity and higher 6-APA content); hence, operation in each pressure for that range is feasible. To conclude, at 50°C and evaporation pressure of -100mmHg, the highest 6-APA yield and total yield of 97.46% and 91.76%, respectively, were attained.
温度和压力对6-氨基青霉素酸蒸发的影响
6-氨基青霉素酸(6-APA)是生产半合成青霉素的原料。在商业规模上,青霉素G通过青霉素酰化酶酶促转化为6-APA。由于平衡反应的性质,产物是在青霉素G、6-APA和苯乙酸(PAA)的混合溶液中。为了纯化目标6-APA,蒸发、结晶和干燥的步骤是必须的。本研究考察了模型溶液蒸发的最佳操作条件。操作变量,如温度在-100mmHg下在30-65°C之间变化,压力在-300 - -50mmHg之间设置,温度为50°C。结果表明,温度是决定6-APA产率的主要因素,与-300 mmHg至-50 mmHg的真空压力相比,其产率值相似。这一事实得到了对压力变化晶体纯度的解释的支持,总体上超过90%(表明均匀性和更高的6-APA含量);因此,在该范围内的每个压力下操作都是可行的。综上所述,在50°C和-100mmHg蒸发压力下,6-APA的产率和总产率最高,分别为97.46%和91.76%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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