首页> 外文会议>Symposium on polymer biocatalysis and biomaterials II >Enzymatic Degradation of Diol-Diacid Type Polyesters into Cyclic Oligomers and Its Application for the Selective Chemical Recycling of PLLA-Based Polymer Blends
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Enzymatic Degradation of Diol-Diacid Type Polyesters into Cyclic Oligomers and Its Application for the Selective Chemical Recycling of PLLA-Based Polymer Blends

机译:二醇二酸型聚酯的酶促降解到循环寡聚体中及其在PLLA基聚合物共混物的选择性化学再循环中的应用

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The lipase-catalyzed degradation of poly(butylene adipate) (PBA) and poly(butylene succinate) (PBS) into cyclic oligomers and their polymerizability were analyzed. The enzymatic polymerization of a cyclic oligomer was dependent on its ring-size. The highest molecular weight PBA with an M_w of 173000 was produced by the polymerization of the cyclic BA monomer The molecular weight decreased to around M_w 60000 by polymerization of the cyclic BA dimer and trimer. Similar results were obtained for PBS. For the efficient chemical recycling of PBA and PBS, the cyclic BA monomer and the cyclic BS dimer had the best oligomer sizes, respectively. As an application of the enzymatic degradation for the chemical recycling of PBS, the selective recycling of the PBS/poly(L-lactic acid)(PLLA) polymer blend was carried out using a lipase and a clay catalyst, montmorillonite K5.
机译:分析了聚(丁烯己二酸酯)(PBA)和聚(丁二酸酯)(PBS)至环状低聚物的脂肪酶催化的降解及其聚合性。环状低聚物的酶聚合取决于其环尺寸。具有173000的M_W的最高分子量PBA通过环状BA单体的聚合产生,分子量通过环状BA二聚体和三聚体的聚合降低至M_W 60000周围。获得类似的结果对PBS获得。对于PBA和PBS的有效化学回收,环状BA单体和环状BS二聚体分别具有最佳的低聚物尺寸。作为PBS化学回收的酶促劣化的施加,使用脂肪酶和粘土催化剂,蒙脱石K5进行PBS / Poly(L-乳酸)(PLLA)聚合物共混物的选择性回收。

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