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将甘油生物加工成用于生物塑料单体的甘油酸。

Bioprocessing of glycerol into glyceric Acid for use in bioplastic monomer.

作者信息

Fukuoka Tokuma, Habe Hiroshi, Kitamoto Dai, Sakaki Keiji

机构信息

Research Institute for Innovation in Sustainable Chemistry, National Institute of Advanced Industrial Science and Technology (AIST).

出版信息

J Oleo Sci. 2011;60(7):369-73. doi: 10.5650/jos.60.369.

Abstract

Utilization of excess glycerol supplies derived from the burgeoning biodiesel industry has recently become very important. Glyceric acid (GA) is one of the most promising glycerol derivatives, and it is abundantly obtained from glycerol by a bioprocess using acetic acid bacteria. In this study, a novel branched-type poly(lactic acid) (PLA) was synthesized by polycondensation of lactide in the presence of GA. The resulting branched PLA had lower crystallinity and glass transition temperatures than the conventional linear PLA, and the peak associated with the melting point of the branched PLA disappeared. Moreover, in a blend of the branched polymer, the crystallization of the linear PLA occurred at a lower temperature. Thus, the branched PLA containing GA synthesized in this study could potentially be used as a novel bio-based modifier for PLA.

摘要

利用新兴生物柴油产业产生的过量甘油供应最近变得非常重要。甘油酸(GA)是最有前途的甘油衍生物之一,通过使用醋酸菌的生物过程可从甘油中大量获得。在本研究中,通过在GA存在下丙交酯的缩聚反应合成了一种新型支化型聚乳酸(PLA)。所得支化PLA的结晶度和玻璃化转变温度低于传统线性PLA,并且与支化PLA熔点相关的峰消失。此外,在支化聚合物的共混物中,线性PLA的结晶在较低温度下发生。因此,本研究中合成的含GA的支化PLA有可能用作PLA的新型生物基改性剂。

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