...
首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Recovery of pyruvic acid with weakly basic polymeric sorbents
【24h】

Recovery of pyruvic acid with weakly basic polymeric sorbents

机译:用弱碱性聚合物吸附剂回收丙酮酸

获取原文
获取原文并翻译 | 示例

摘要

BACKGROUND: Carboxylic acids are among the most important substances that can be manufactured from biomass. However, the recovery of carboxylic acids from fermentation broths presents a challenging separation problem. To avoid the production of waste salts and net consumption of chemicals in the calcium carboxylate salt process, the use of reversible chemical complexation with polymeric sorbents and extractants is attractive for carboxylic acid recovery. Pyruvic acid is widely used in the manufacture of medicines, pesticides and foodstuffs and can be produced by fermentation. Since the acidity of pyruvic acid (pKa = 2.49) is stronger than that of normal carboxylic acids, and as few reports on the recovery of pyruvic acid are available, the sorption of pyruvic acid from aqueous solution on two types of weakly basic polymeric sorbent, tertiary amine D301R and primary amine D392, was investigated over a wide pH range and at various salt (MgSO4) concentrations. RESULTS: Overloading adsorption of pyruvic acid on both weakly basic polymeric sorbents occurred, with the overloading of D392 being greater than that of D301R. The adsorption of pyruvic acid on both sorbents was greatly affected by the solution pH and the salt concentration in the aqueous phase. An overloading model was able to predict the experimental uptake data very well. CONCLUSION: Solution pH is one of the most important operating conditions, and both polymeric sorbents D392 and D301R can be used to recover pyruvic acid from dilute aqueous solution with high efficiency at a solution pH around 2. The uptake by D392 is greater than that by D301R owing to steric hindrance of the tertiary amine.
机译:背景:羧酸是最重要的可以由生物质制造的物质。然而,从发酵液中回收羧酸提出了具有挑战性的分离问题。为了避免在羧酸钙盐工艺中产生废盐和化学药品的净消耗,与聚合物吸附剂和萃取剂的可逆化学络合的使用对羧酸的回收很有吸引力。丙酮酸广泛用于药物,农药和食品的生产中,并可通过发酵生产。由于丙酮酸的酸度(pKa = 2.49)比普通羧酸强,而且关于丙酮酸回收的报道很少,因此,丙酮酸从水溶液中吸附在两种类型的弱碱性聚合物吸附剂上,在较宽的pH范围和各种盐(MgSO4)浓度下研究了叔胺D301R和伯胺D392。结果:丙酮酸在两种弱碱性聚合物吸附剂上均发生重载吸附,其中D392的重载大于D301R。丙酮酸在两种吸附剂上的吸附都受到溶液pH值和水相中盐浓度的极大影响。超载模型能够很好地预测实验摄取数据。结论:溶液pH是最重要的操作条件之一,并且聚合物吸附剂D392和D301R均可用于在pH约为2的溶液中从稀水溶液中高效回收丙酮酸。D392的吸收量大于D392的吸收量。 D301R由于叔胺的空间位阻。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号