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通过酵母酶处理加速塑料产品降解。

Accelerated degradation of plastic products via yeast enzyme treatment.

机构信息

National Agriculture and Food Research Organization (NARO), Tsukuba, Japan.

Gunma Industrial Technology Center, 884-1 Kamesato, Maebashi, Gunma, 379-2147, Japan.

出版信息

Sci Rep. 2023 Feb 10;13(1):2386. doi: 10.1038/s41598-023-29414-1.

Abstract

Biodegradable plastics can solve the problem of unwanted plastics accumulating in the environment if they can be given the contradictory properties of durability in use and rapid degradation after use. Commercially available agricultural biodegradable mulch films are made from formulations containing polybutylene adipate-co-terephthalate (PBAT) to provide mechanical and UV resistance during the growing season. Although used films are ploughed into the soil using a tiller to promote decomposition, it is difficult if they remain durable. We showed that an enzyme produced by the leaf surface yeast Pseudozyma antarctica (PaE) degrades PBAT-containing films. In laboratory studies, PaE randomly cleaved the PBAT polymer chain and induced erosion of the film surface. In the field, commercial biodegradable films containing PBAT placed on ridges were weakened in both the warm and cold seasons by spraying the culture filtrate of P. antarctica. After the field was ploughed the next day, the size and total weight of residual film fragments decreased significantly (p < 0.05). Durable biodegradable plastics used in the field are degraded using PaE treatment and are broken down into small fragments by the plough. The resultant degradation products can then be more readily assimilated by many soil microorganisms.

摘要

可生物降解塑料如果能够兼具耐用性和使用后快速降解的特性,就能解决环境中积累的不可用塑料的问题。市售的农业用生物降解覆盖薄膜是由包含聚丁二酸丁二醇酯-对苯二甲酸酯(PBAT)的配方制成的,在生长季节提供机械和抗紫外线性能。尽管使用过的薄膜可以通过耕整机翻耕到土壤中以促进分解,但如果它们仍然耐用,这就很困难。我们表明,南极假丝酵母(Pseudozyma antarctica)叶表面产生的一种酶(PaE)可以降解含 PBAT 的薄膜。在实验室研究中,PaE 随机切割 PBAT 聚合物链,并诱导薄膜表面侵蚀。在田间,通过喷洒南极假丝酵母的培养液滤液,使含有 PBAT 的商用生物降解薄膜在温暖和寒冷季节都在垄上变弱。第二天犁地后,残余薄膜碎片的大小和总重量显著减少(p<0.05)。在田间使用的耐用生物降解塑料通过 PaE 处理进行降解,并被犁碎成小碎片。由此产生的降解产物随后可以更容易地被许多土壤微生物同化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6145/9918467/b6f430286073/41598_2023_29414_Fig1_HTML.jpg

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