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An Efficient Method for the Application of PHA-Poor Solvents to Extract Polyhydroxybutyrate from Cupriavidus necator

机译:应用低PHA溶剂从铜尿菌中提取多羟基丁酸酯的有效方法

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摘要

There are many published studies presenting ethanol and acetone as PHAs- poor solvents, where these two solvents are shown to dissolve <2% (w/v) of PHAs at low temperatures. In this study, the suitability of ethanol and acetone for the recovery of PHB at different temperatures (from room temperature to near boiling point) in Cupriavidus necator was investigated. Experiments were performed using response surface methodology to examine the effects of different temperatures and heating incubation times on recovery percentage using the two solvents. The highest recovery percentage (92.3%) and product purity (up to 99%) were obtained with ethanol- assisted extraction at 76 degrees C for 32 min of incubation time. Under these conditions the extracted PHB exhibited a molecular mass of 1.2 x 10(6). The present strategy showed that at temperatures near its boiling point, ethanol, as a nonhalogenated solvent, represents a good alternative to halogenated solvents, like chloroform, when PHB recovery is concerned. DSC analysis showed good thermal properties for ethanol- and acetone-extracted biopolymers. GC and H-1 NMR analysis confirmed the extracted biopolymer to be polyhydroxybutyrate of good purity. (C) 2016 American Institute of Chemical Engineers
机译:有许多已发表的研究表明乙醇和丙酮是缺乏PHAs的溶剂,在低温下,这两种溶剂均能溶解<2%(w / v)的PHA。在这项研究中,研究了乙醇和丙酮在Cupriavidus necator的不同温度(从室温到接近沸点)下回收PHB的适用性。使用响应表面方法进行实验,以检验使用两种溶剂的不同温度和加热孵育时间对回收率的影响。在76°C的乙醇中萃取32分钟,可获得最高的回收率(92.3%)和产品纯度(高达99%)。在这些条件下,提取的PHB的分子质量为1.2 x 10(6)。本策略表明,在涉及PHB回收时,乙醇作为一种非卤代溶剂,在接近其沸点的温度下可以很好地替代卤代溶剂(如氯仿)。 DSC分析显示乙醇和丙酮萃取的生物聚合物具有良好的热性能。 GC和H-1 NMR分析证实,提取的生物聚合物为纯度良好的聚羟基丁酸酯。 (C)2016美国化学工程师学会

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