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The influence of biotic and abiotic factors on the rate of degradation of poly(lactic) acid (PLA) coupons buried in compost and soil

机译:生物和非生物因素对堆肥和土壤中埋藏的聚乳酸(PLA)样片降解速率的影响

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Poly(lactic) acid (PLA) is a compostable biopolymer and has been commercialised for the for the manufacture of short-shelf life products. As a result, increasing amounts of PLA are entering waste management systems and the environment; however, the degradation mechanism is unclear. While hydrolysis of the polymer occurs abiotically at elevated temperature in the presence of water, potential catalytic role for microbes in this process is yet to be established. In this study, we examined the degradation of PLA coupons from commercial packaging at a range of temperatures (25°, 37°, 45°, 50° and 55 ℃) in soil and compost and compared with the degradation rates in sterile aqueous conditions by measuring loss of tensile strength and molecular weight (Mw). In addition, in order to assess the possible influence of abiotic soluble factors in compost and soil on degradation of PLA, degradation rates in microorganism-rich compost and soil were compared with sterile compost and soil extract at 50 C. Temperature was determined to be the key parameter in PLA degradation and degradation rates in microorganism-rich compost and soil were faster than in sterile water at temperatures 45° and 50 ℃ determined by tensile strength and Mw loss. Furthermore, all tensile strength was lost faster after 30 and 36 days in microorganism-rich compost and soil, respectively, than in sterile compost and soil extract, 57 and 54 days, respectively at 50 "C. Significantly more Mw, 68% and 64%, was lost in compost and soil, respectively than in compost extract, Mw, 53%; and in soil extract, 57%. Therefore, degradation rates were faster in microorganism-rich compost and soil than in sterile compost and soil extract, which contained the abiotic soluble factors of compost and soil at 50 ℃. These comparative studies support a direct role for microorganisms in PLA degradation at elevated temperatures in humid environments. No change in tensile strength or Mw was observed either 25° or 37 ℃ after 1 year suggesting that accumulation of PLA in the environment may cause future pollution issues.
机译:聚乳酸(PLA)是一种可堆肥的生物聚合物,已商业化用于制造短寿命产品。结果,越来越多的PLA进入废物管理系统和环境。但是,降解机理尚不清楚。尽管聚合物的水解在升高的温度下在水的存在下非生物地发生,但在该过程中微生物的潜在催化作用尚未确定。在这项研究中,我们研究了在一定温度(25°,37°,45°,50°和55℃)下土壤和堆肥中商业包装中PLA试样的降解情况,并与无菌水性条件下的降解率进行了比较。测量抗张强度和分子量(Mw)的损失。此外,为了评估堆肥和土壤中非生物可溶性因子对PLA降解的可能影响,将富含微生物的堆肥和土壤与无菌堆肥和土壤提取物在50℃下的降解率进行了比较。确定温度为由抗张强度和Mw损失确定,在45°和50℃的温度下,微生物降解的关键参数和富含微生物的堆肥和土壤中的降解速率要快于无菌水中。此外,富含微生物的堆肥和土壤分别在30和36天后所有抗张强度的损失快于无菌堆肥和土壤提取物,分别在50°C下损失了57和54天。Mw分别显着多于68%和64%在堆肥和土壤中损失的百分比分别比堆肥提取物中的损失(Mw为53%)和土壤提取物中的损失(57%),因此,富含微生物的堆肥和土壤中的降解速率比无菌堆肥和土壤提取物中的降解速率更快。含有50℃时堆肥和土壤的非生物可溶性因子,这些比较研究表明微生物在潮湿环境中升高温度下可直接影响PLA降解,在25°或37℃1年后未观察到抗张强度或Mw的变化提示PLA在环境中的积累可能会导致未来的污染问题。

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