首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Evaluation of biodegradation behavior of poly(butylene succinate-co-butylene adipate) with lowered crystallinity by thermally assisted hydrolysis and methylation-gas chromatography
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Evaluation of biodegradation behavior of poly(butylene succinate-co-butylene adipate) with lowered crystallinity by thermally assisted hydrolysis and methylation-gas chromatography

机译:通过热辅助水解和甲基化-气相色谱法评估结晶度降低的聚丁二酸丁二酯-己二酸丁二酯共聚物的生物降解行为

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In our previous paper, thermally assisted hydrolysis and methylation-gas chromatography (THM-GC) measurements of poly(butylene succinate-co-butylene adipate) (PBSA) in the presence of tetramethy-lammonium hydroxide had revealed that the butylene adipate (BA) content in the PBSA films gradually decreased with soil burial degradation time. In order to clarify the cause of this change in copolymer composition, biodegradation behavior of PBSA with lowered crystallinity was evaluated by THM-GC. PBSA film samples with lower degree of crystallinity, prepared by heating and cooling quickly the original commercially available films, were subjected to a soil burial biodegradation test at 30℃for up to 4 weeks. The copolymer compositions between BA and butylene succinate (BS) units in various stages of the degraded film samples were estimated on the basis of chromatograms obtained by THM-GC with less than 5% of the relative standard deviations. As a result, the change in copolymer composition for the heated PBSA films during soil burial was relatively small compared to the original films, suggesting that biodegradation for the heated films proceeded with the comparable rate for both BA and BS-rich moieties due to lowered crystallinity. Based on these results, the reason for the change in copolymer composition observed for the original PBSA films was clarified as follows: (1) the BA-rich moieties in the copolymer chains could show relatively lower crystallinity than the BS-rich moieties and (2) the BA-rich moieties were preferentially biodegraded during soil burial test, leading to the decrease in the BA content as the biodegradation proceeded.
机译:在我们以前的论文中,在氢氧化四甲基-铵存在下,通过热辅助水解和甲基化-气相色谱(THM-GC)测定聚丁二酸丁二酯-己二酸丁二酯(PBSA),发现己二酸丁二酯(BA)随着土葬时间的延长,PBSA膜中的含量逐渐降低。为了弄清这种共聚物组成变化的原因,通过THM-GC评估了结晶度降低的PBSA的生物降解行为。通过快速加热和冷却原始市售薄膜制备的较低结晶度的PBSA薄膜样品,在30℃下进行土壤埋藏生物降解测试,长达4周。基于THM-GC获得的色谱图,相对于标准偏差小于5%,估算了降解膜样品各个阶段中BA与琥珀酸丁二酯(BS)单元之间的共聚物组成。结果,与原始膜相比,在土壤掩埋过程中加热的PBSA膜的共聚物组成变化相对较小,这表明由于结晶度降低,加热的膜的生物降解过程与富含BA和BS的部分的降解速率相当。 。基于这些结果,阐明了对原始PBSA膜观察到的共聚物组成发生变化的原因如下:(1)共聚物链中富含BA的部分的结晶度可能低于富含BS的部分,并且(2 )富含BA的部分在土壤掩埋测试中优先被生物降解,导致生物降解过程中BA含量降低。

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