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Recovery of polyhydroxybutyrate (PHB) from Cupriavidus necator biomass by solvent extraction with 1,2-propylene carbonate

机译:通过碳酸1,2-丙二醇的溶剂萃取从铜紫花病菌生物质中回收聚羟基丁酸酯(PHB)

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摘要

An integrated procedure for the recovery of polyhydroxybutyrate (PHB) produced by Cupriavidus necator based on the extraction with 1,2-propylene carbonate was evaluated. The effect of temperature (100-145 degrees C) and contact time (15-45 min), precipitation period, and biomass pretreatments (pH shock and/or thermal treatments) on PHB extraction efficiency and polymer properties was evaluated. The highest yield (95%) and purity (84%) were obtained with the combination of a temperature of 130 degrees C and a contact time of 30 min, with a precipitation period of 48 h. Under these conditions, PHB had a molecular weight of 7.4 x 105, which was the highest value obtained. Lower values (2.2 x 10(5)) were obtained for higher temperatures (145 degrees C), while lower temperatures resulted in incomplete extraction yields (45-54%). No further yield improvement was achieved with the pH/heat pretreatments, but the polymer's molecular weight was increased to 1.3 x 10(6). The PHB physical properties were not significantly affected by any of the tested procedures, as shown by the narrow ranges obtained for the glass transition temperature (4.8-5.0 degrees C), melting temperature (170.1-180.1 degrees C), melting enthalpy (77.8-88.5 J/g) and crystallinity (55-62%). 1,2-Propylene carbonate was shown to be an efficient solvent for the extraction of PHB from biomass. The precipitation procedure was found to highly influence the polymer recovery and its molecular weight. Although polymer molecular weight and purity were improved by applying pH/heat pretreatment to the biomass, the procedure involves the use of large amounts of chemicals, which increases the recovery costs and makes the process environmentally unfriendly.
机译:评估了基于用碳酸1,2-丙二醇酯萃取而回收由Cupriavidus necator生产的聚羟基丁酸酯(PHB)的综合程序。评估了温度(100-145摄氏度)和接触时间(15-45分钟),沉淀时间以及生物量预处理(pH冲击和/或热处理)对PHB萃取效率和聚合物性能的影响。温度为130℃,接触时间为30分钟,沉淀时间为48小时,可获得最高的收率(95%)和纯度(84%)。在这些条件下,PHB的分子量为7.4 x 105,这是获得的最高值。较高的温度(145摄氏度)获得较低的值(2.2 x 10(5)),而较低的温度导致提取产率不完全(45-54%)。 pH /加热预处理无法进一步提高产量,但聚合物的分子量增加至1.3 x 10(6)。 PHB物理性能不受任何测试程序的影响,如玻璃化转变温度(4.8-5.0摄氏度),熔融温度(170.1-180.1摄氏度),熔融焓(77.8- 88.5 J / g)和结晶度(55-62%)。碳酸1,2-丙二醇酯是从生物质中萃取PHB的有效溶剂。发现沉淀过程对聚合物回收率及其分子量有很大影响。尽管通过对生物质进行pH /加热预处理可以提高聚合物的分子量和纯度,但该过程涉及使用大量化学药品,这增加了回收成本,并使该工艺对环境不利。

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