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由箭鱼(Aristeus antennatus)壳聚糖、蓖麻油作为增塑剂和淀粉作为填充基质制成的可生物降解塑料。

Biodegradable plastic formulated from chitosan of Aristeus antennatus shells with castor oil as a plasticizer agent and starch as a filling substrate.

机构信息

Oceanographic Sciences Department, Faculty of Science, Port Said University, Port Fuad, Egypt.

Bahçe Vocational School, Department of Chemistry and Chemical Processing Technologies, Osmaniye Korkut Ata University, Osmaniye, 80000, Turkey.

出版信息

Sci Rep. 2024 May 15;14(1):11161. doi: 10.1038/s41598-024-61377-9.

Abstract

Biodegradable plastics are those subjected easily to a degradation process, in which they can be decomposed after disposal in the environment through microbial activity. 30 bioplastic film formulations based only on chitosan film were used in the current investigation as a positive control together with chitosan film recovered from chitin-waste of locally obtained Aristeus antennatus. Additionally, castor oil was used as a plasticizer. While the yield of chitosan was 18% with 7.65% moisture content and 32.27% ash in the shells, the isolated chitin had a degree of deacetylation (DD) of 86%. The synthesized bioplastic films were characterized via numerous criteria. Firstly, the swelling capacity of these biofilms recorded relatively high percentages compared to polypropylene as synthetic plastic. Noticeably, the FTIR profiles, besides DSC, TGA, and XRD, confirmed the acceptable characteristics of these biofilms. In addition, their SEM illustrated the homogeneity and continuity with a few straps of the chitosan film and showed the homogeneous mixes of chitosan and castor oil with 5 and 20%. Moreover, data detected the antibacterial activity of different bioplastic formulas against some common bacterial pathogens (Enterococcus feacalis, Kelbsiella pnumina, Bacillus subtilis, and Pseudomonas aeruginosa). Amazingly, our bioplastic films have conducted potent antimicrobial activities. So, they may be promising in such a direction. Further, the biodegradability efficacy of bioplastic films formed was proved in numerous environments for several weeks of incubation. However, all bioplastic films decreased in their weights and changed in their colors, while polypropylene, was very constant all the time. The current findings suggest that our biofilms may be promising for many applications, especially in the field of food package protecting the food, and preventing microbial contamination, consequently, it may help in extending the shelf life of products.

摘要

可生物降解塑料是指那些容易发生降解的塑料,在环境中处理后,通过微生物活动可以分解。在当前的研究中,使用了 30 种基于壳聚糖的生物塑料薄膜配方作为阳性对照,这些配方仅基于壳聚糖薄膜,同时还使用了从当地获得的箭鱼(Aristeus antennatus)的壳聚糖废物中回收的壳聚糖薄膜。此外,还使用了蓖麻油作为增塑剂。壳聚糖的收率为 18%,含水量为 7.65%,灰分为 32.27%,而分离出的壳聚糖脱乙酰度(DD)为 86%。通过多种标准对合成的生物塑料薄膜进行了表征。首先,与合成塑料聚丙烯相比,这些生物膜的溶胀能力记录了相对较高的百分比。值得注意的是,除了 DSC、TGA 和 XRD 之外,FTIR 图谱还证实了这些生物膜的可接受特性。此外,它们的 SEM 图说明了其均匀性和连续性,其中有几条壳聚糖薄膜的带,并且显示了壳聚糖和蓖麻油 5%和 20%的均匀混合物。此外,数据检测了不同生物塑料配方对一些常见细菌病原体(粪肠球菌、肺炎克雷伯菌、枯草芽孢杆菌和铜绿假单胞菌)的抗菌活性。令人惊讶的是,我们的生物塑料薄膜具有很强的抗菌活性。因此,它们在这方面可能具有广阔的前景。此外,还在数周的孵育期内,在多种环境中证明了生物塑料薄膜的生物降解效果。然而,所有的生物塑料薄膜的重量都有所下降,颜色也发生了变化,而聚丙烯则一直保持非常稳定。目前的研究结果表明,我们的生物膜可能在许多应用中具有广阔的前景,特别是在食品包装领域,可保护食品,防止微生物污染,从而有助于延长产品的保质期。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db4a/11096362/5b0b870f3908/41598_2024_61377_Fig1_HTML.jpg

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