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首页> 外文期刊>Journal of Applied Polymer Science >Synthesis and biodegradation of copolyesterether of copoly(succinic anhydride ethylene oxide) with polyether
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Synthesis and biodegradation of copolyesterether of copoly(succinic anhydride ethylene oxide) with polyether

机译:共聚(琥珀酸酐环氧乙烷)与聚醚的共聚酯醚的合成及生物降解

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摘要

The thermal properties and biodegradability of block copolyesterethers based on copoly[succinic anhydride (SA)/ethylene oxide (EO)] (polymer composition range SA/EO 42/58-49/51 mol %), synthesized by ring-opening copolymerization and poly( ethylene glycol) (PEG) or poly(propylene glycol) (PPG), were studied. The block copolyesterethers synthesized from higher than 7000 molecular weight (M-n) or high SA content copoly(SA/EO), SA/EO = 48/52 or 49/51, and PEG showed melting points and fusion heats (Delta H) similar to those of the prepolymers without leading to a microphase-separation structure. Enzymatic degradability of the block copolyesterethers synthesized from biodegradable copoly(SA/EO) with a low SA content (SA/EO = 42/58 mol %) and PEG was significantly smaller compared to that of the chain-extended copoly( SA/EO) used as a prepolymer. On the other hand, the block copolymers synthesized by an equimolar amount of copoly(SA/EO) and PPG showed evidence of a microphase-separation structure. An increase in propylene glycol (PG) content interfered with the formation of a microphase-separation structure. However, the block copolyesterethers including nonbiodegradable copoly(SA/EO), with a high SA content (SA/EO = 49/51 mol %), and PPG were found to be enzymatically degradable. In the biodegradation testing with standard activated sludge, the block copolyesterethers were degraded by microorganisms in activated sludge. The relationship between polymer composition and the biodegradation rate by activated sludge shows a similar trend to that of enzymatic hydrolysis. (C) 1998 John Wiley & Sons, Inc. [References: 42]
机译:通过共聚[琥珀酸酐(SA)/环氧乙烷(EO)](聚合物组成范围为SA / EO 42 / 58-49 / 51 mol%)制备的嵌段共聚酯醚的热性质和生物降解性,通过开环共聚和聚(乙二醇)(PEG)或聚丙二醇(PPG)。由高于7000的分子量(Mn)或高SA含量的共聚共聚物(SA / EO),SA / EO = 48/52或49/51和PEG合成的嵌段共聚聚酯醚的熔点和熔融热(Delta H)与那些预聚物,而不会导致微相分离结构。由具有低SA含量(SA / EO = 42/58 mol%)和PEG的可生物降解共聚(SA / EO)合成的嵌段共聚酯醚的酶降解能力明显小于扩链共聚(SA / EO)的嵌段用作预聚物。另一方面,由等摩尔量的共聚(SA / EO)和PPG合成的嵌段共聚物显示出微相分离结构的证据。丙二醇(PG)含量的增加会干扰微相分离结构的形成。然而,发现具有高SA含量(SA / EO = 49 / 51mol%)和PPG的包括不可生物降解的共聚(SA / EO)的嵌段共聚酯醚和PPG是可酶降解的。在使用标准活性污泥进行的生物降解测试中,嵌段共聚酯醚被活性污泥中的微生物降解。聚合物组成与活性污泥的生物降解速率之间的关系显示出与酶水解相似的趋势。 (C)1998 John Wiley&Sons,Inc. [参考:42]

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