首页> 外文学位 >Respirometric measurement of the stereochemical effects on the biodegradation of polylactic and polyglutamic acid in a simulated compost environment.
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Respirometric measurement of the stereochemical effects on the biodegradation of polylactic and polyglutamic acid in a simulated compost environment.

机译:在模拟堆肥环境中进行立体化学对聚乳酸和聚谷氨酸生物降解的立体化学影响的呼吸测量。

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摘要

The need for better disposal methods for plastics and plastic products has led to increased, testing of new biodegradable polymers for their ability to degrade in a laboratory compost system. Such testing aids in the development of commercial plastic products intended to degrade under normal landfill conditions without posing environmental problems. Mixtures of 90% D/10% L and 50% D/50% L Polyglutamic acid have shown that the stereochemistry of the polymer subunit plays an important role in its degradation; showing an 8.3% and 41.3% mineraliztion respectively over a 10 day period. Testing of a second set of similar samples of PGA also showed high rates of degradation, and may be a result of stereochemical effects. Testing of Polylactic acid mixtures resulted in a 3.9 and 4.9% mineralization for the 100% D isomer after 10 and 15 days, respectively and 0% mineralization for the L isomer after an eight day period. Testing of these two polymers shows that stereochemistry is important in the degradation of polymers in a simulated compost environment, and needs to be considered when developing commercial polymer products that are intended to biodegrade.
机译:对塑料和塑料产品的更好处置方法的需求导致对新型可生物降解聚合物在实验室堆肥系统中降解能力的测试不断增加。这种测试有助于开发旨在在正常垃圾填埋场条件下降解而不会造成环境问题的商业塑料产品。 90%D / 10%L和50%D / 50%L聚谷氨酸的混合物表明,聚合物亚基的立体化学在其降解中起着重要作用。在10天的时间内分别有8.3%和41.3%的矿化作用。第二组相似的PGA样品的测试也显示出较高的降解率,并且可能是立体化学效应的结果。聚乳酸混合物的测试分别导致10天和15天后100%D异构体的3.9%和4.9%矿化,以及八天后L%异构体的0%矿化。对这两种聚合物的测试表明,立体化学对模拟堆肥环境中的聚合物降解非常重要,在开发旨在进行生物降解的商业聚合物产品时需要考虑立体化学。

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