Rychter Piotr, Biczak Robert, Herman Barbara, Smyłła Aleksandra, Kurcok Piotr, Adamus Grazyna, Kowalczuk Marek
Institute of Chemistry and Environment Protection, Jan Długosz University, 13/15 Armii Krajowej Avenue, 42-200 Czestochowa, Poland.
Biomacromolecules. 2006 Nov;7(11):3125-31. doi: 10.1021/bm060708r.
The degradation of poly[(R,S)-3-hydroxybutyrate], a-PHB, binary blends with natural PHB (n-PHB) and poly(L-lactic acid), PLLA, respectively, has been investigated in soil. In such a natural environment, a-PHB blend component was found to biodegrade. The degradation of a-PHB-containing blends proceeded faster than that of respective plain n-PHB and PLLA. The molecular weight decrease of the n-PHB component was higher, while the same rate of bioerosion of both components was observed for the a-PHB/n-PHB binary blend. For the a-PHB blend with PLLA, the weight loss was accompanied by blend composition changes and the decrease of a-PHB content. However, the PLLA molecular weight decrease was lower in the blend in comparison with the plain PLLA sample. The increase of the number of microorganisms particularly observed for the soil where binary blends were incubated indicates that microbial degradation of a-PHB takes place. The terrestrial plant growth test (cress and barley) demonstrates no environmental toxicity of the materials studied.
已在土壤中研究了聚[(R,S)-3-羟基丁酸酯](α-PHB)分别与天然聚羟基丁酸酯(n-PHB)和聚(L-乳酸)(PLLA)的二元共混物的降解情况。在这样的自然环境中,发现α-PHB共混物成分会发生生物降解。含α-PHB的共混物的降解速度比相应的纯n-PHB和PLLA更快。n-PHB成分的分子量下降更高,而对于α-PHB/n-PHB二元共混物,观察到两种成分的生物侵蚀速率相同。对于α-PHB与PLLA的共混物,重量损失伴随着共混物组成变化以及α-PHB含量的降低。然而,与纯PLLA样品相比,共混物中PLLA的分子量下降更低。在孵育二元共混物的土壤中特别观察到微生物数量的增加,这表明α-PHB发生了微生物降解。陆生植物生长试验(水芹和大麦)表明所研究的材料没有环境毒性。