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Active biodegradable packaging films modified with grape seeds lignin

机译:用葡萄籽木质素改性活性可生物降解包装薄膜

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摘要

Biodegradable packaging materials represent one possible solution for how to reduce the negative environmental impact of plastics. The main idea of this work was to investigate the possibility of utilizing grape seed lignin for the modification of polyhydroxyalkanoates with the use of its antioxidant capacity in packaging films. For this purpose, polymeric films based on the blend of high crystalline poly(3-hydroxybutyrate) (PHB) and amorphous polyhydroxyalkanoate (PHA) were prepared. PHB/PHA films displayed Young modulus of 240 MPa, tensile strength at a maximum of 6.6 MPa and elongation at break of 95.2%. The physical properties of PHB/PHA films were modified by the addition of 1-10 wt% of grape seeds lignin (GS-L). GS-L lignin showed a high antioxidant capacity: 238 milligrams of Trolox equivalents were equal to one gram of grape seeds lignin. The incorporation of grape seeds lignin into PHB/PHA films positively influenced their gas barrier properties, antioxidant activity and biodegradability. The values of oxygen and carbon dioxide transition rate of PHB/PHA with 1 wt% of GS-L were 7.3 and 36.3 cm(3)m(-2)24 h 0.1 MPa, respectively. The inhibition percentage of the ABTS radical determined in PHB/PHA/GS-L was in the range of 29.2% to 100% depending on the lignin concentration. The biodegradability test carried out under controlled composting environment for 90 days showed that the PHB/PHA film with 50 w/w% of amorphous PHA reached the degradability degree of 68.8% being about 26.6% higher decomposition than in the case of neat high crystalline PHB film. The degradability degree of PHA films in compost within the tested period reflected the modification of the semi-crystalline character and varied with the incorporated lignin. From the toxicological point of view, the composts obtained after biodegradation of PHA films proved the non-toxicity of PHB/PHA/GS-L materials and its degradation products showed a positive effect on white mustard (Sinapis albaL.) seeds germination.
机译:可生物降解的包装材料代表了如何降低塑料的负面环境影响的一种可能解决方案。这项工作的主要思想是探讨利用葡萄种子木质素用于改性多羟基烷烃的可能性,在包装膜中使用其抗氧化能力。为此目的,制备基于高晶体聚(3-羟基丁酯)(PHB)和无定形多羟基烷烷(PHA)的共混物的聚合物膜。 PHB / PHA薄膜显示240MPa的杨氏模量,拉伸强度最大为6.6MPa,断裂伸长率为95.2%。通过添加1-10wt%的葡萄种子木质素(GS-L)来改变PHB / PHA膜的物理性质。 GS-L木质素显示出高抗氧化能力:238毫克的拖曳物等同物等于一克葡萄种子木质素。将葡萄籽木质素的掺入PHB / PHA膜呈积极影响其阻气性,抗氧化活性和生物降解性。 PHB / PHA的氧气和二氧化碳转化率的值分别为1wt%的GS-1的PHB / PHA的转变率分别为7.3和36.3cm(3)m(-2)24h 0.1MPa。根据木质素浓度,在PHB / PHA / GS-L中测定的ABTS基团的抑制百分比为29.2%至100%。在受控堆肥环境下进行的生物降解性试验90天显示,具有50W / W%的无定形PHA的PHB / PHA膜达到可降解程度为68.8%,比在整齐的高结晶PHB的情况下比在纯净的高结晶PHB的情况下约为26.6%。电影。在测试时期内的堆肥中PHA膜的可降解程度反映了半结晶特征的修饰,并随着掺入的木质素而变化。从毒理学的角度来看,PHA薄膜生物降解后获得的堆肥证明了PHB / PHA / GS-L材料的无毒,其降解产物对白芥菜(Sinapis Albal。)种子萌发显示出积极作用。

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  • 来源
    《RSC Advances》 |2020年第49期|共12页
  • 作者单位

    Brno Univ Technol Fac Chem Dept Food Chem &

    Biotechnol Purkynova 118 Brno 61200 Czech Republic;

    Mendel Univ Brno Fac AgriSci Dept Appl &

    Landscape Ecol Zemedelska 1 Brno 61300 Czech Republic;

    Mendel Univ Brno Fac AgriSci Dept Appl &

    Landscape Ecol Zemedelska 1 Brno 61300 Czech Republic;

    Brno Univ Technol Fac Chem Dept Phys &

    Appl Chem Purkynova 118 Brno 61200 Czech Republic;

    Brno Univ Technol Fac Chem Dept Phys &

    Appl Chem Purkynova 118 Brno 61200 Czech Republic;

    Tomas Bata Univ Zlin Ctr Polymer Syst Trida Tomase Bati 5678 Zlin 76001 Czech Republic;

    Mendel Univ Brno Fac AgriSci Dept Appl &

    Landscape Ecol Zemedelska 1 Brno 61300 Czech Republic;

    Brno Univ Technol Fac Chem Dept Food Chem &

    Biotechnol Purkynova 118 Brno 61200 Czech Republic;

    Brno Univ Technol Fac Chem Dept Food Chem &

    Biotechnol Purkynova 118 Brno 61200 Czech Republic;

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  • 正文语种 eng
  • 中图分类 化学;
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