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The Relationship Between the Chemical Structure of Poly(alkylene glycol)s and Their Aerobic Biodegradability in an Aqueous Environment

机译:水性环境中聚亚烷基二醇的化学结构与其有氧生物降解能力之间的关系

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摘要

The relationship between the chemical structure of poly(alkylene glycol)s (PAGs) and their biodegradability was studied using a set of polymeric fluids that included poly(ethylene glycol), poly(propylene glycol) (PPG), random copolymers of ethylene oxide (EO) and propylene oxide (PO) differing in the EO/PO ratio as well as PAGs capped with ether or acyl moieties. The PAGs that were tested had an average molecular weight (MW) in the range of 350-3,600 Da and differed in their polymer backbones by either linear (diol type) or branched (triol type) molecules. The ultimate biodegradability of the PAGs was determined according to ISO 14593 (CO_2 headspace test) with a non-pre-exposed (as in OECD 310 test) and pre-exposed (adapted) inoculum. PAGs with the structure of PPG and copolymers of EO/PO of diol or triol structures with average molecular weights lower than 1,000 Da can be considered as readily biodegradable. Their ultimate biodegradation exceeds the limit of 60 % (according to the criteria of the OECD 310 test). PAGs with a copolymer structure and MW values ranging between 1,000 and 3,600 Da are not readily biodegradable, but they can be considered as those of inherent ultimate biodegradability. The increased EO content in PAG structures and the acylation of the terminal hydroxyl groups with carboxylic acids favourably influenced their biodegradability. Capped PAGs containing terminal ether groups appeared to be resistant to biodegradation.
机译:聚亚烷基二醇(PAG)的化学结构与其生物降解性之间的关系使用一组聚合物流体进行了研究,其中包括聚(乙二醇),聚(丙二醇)(PPG),环氧乙烷的无规共聚物( EO)和环氧丙烷(PO)的EO / PO比以及以醚或酰基部分封端的PAG有所不同。被测试的PAG的平均分子量(MW)在350-3,600 Da范围内,并且它们的聚合物主链因线性(二醇型)或支链(三醇型)分子而异。 PAGs的最终生物降解能力是根据ISO 14593(CO_2顶空试验)和未预先暴露(如OECD 310试验)和预先暴露(适应)的接种物确定的。具有PPG结构的PAG和平均分子量低于1,000 Da的二醇或三醇结构的EO / PO的共聚物可以被认为是易于生物降解的。它们的最终生物降解超过60%的极限(根据OECD 310测试的标准)。具有共聚物结构和MW值在1,000和3,600 Da之间的PAG不易生物降解,但可以认为具有固有的最终生物降解性。 PAG结构中EO含量的增加以及末端羟基与羧酸的酰化作用有利地影响了其生物降解性。含有末端醚基的封端PAG似乎具有抗生物降解性。

著录项

  • 来源
    《Journal of Polymers and the Environment》 |2013年第1期|172-180|共9页
  • 作者单位

    Division of Chemistry and Technology of Fuel, Faculty of Chemistry, Wroclaw University of Technology, ul. Gdanska 7/9, 50-344 Wroclaw, Poland;

    Division of Chemistry and Technology of Fuel, Faculty of Chemistry, Wroclaw University of Technology, ul. Gdanska 7/9, 50-344 Wroclaw, Poland;

    Division of Chemistry and Technology of Fuel, Faculty of Chemistry, Wroclaw University of Technology, ul. Gdanska 7/9, 50-344 Wroclaw, Poland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    biodegradation; polyalkylene glycol; PAG; PPG; capped PAG; ISO 14593;

    机译:生物降解聚亚烷基二醇PAG;PPG;封顶的PAG;ISO 14593;

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