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首页> 外文期刊>Journal of Hazardous Materials >Biofilm development of Bacillus siamensis ATKU1 on pristine short chain low-density polyethylene: A case study on microbe-microplastics interaction
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Biofilm development of Bacillus siamensis ATKU1 on pristine short chain low-density polyethylene: A case study on microbe-microplastics interaction

机译:BACOFILM SIANENSIS ATKU1对原始短链低密度聚乙烯的开发:微生物微薄相互作用的案例研究

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摘要

A low-density polyethylene (LDPE) degrading bacterial strain (ATKU1) was isolated (99.86% similar with Bacillus siamensis KCTC 13613(T)) from a plastic dumping site to study interactions between microplastics ( 5 mm) and microorganisms. The strain was found (by scanning electron microscopy) to form biofilm on the microplastic surface after its interaction with LDPE (avg. M-w similar to 4,000 Da and avg. M-n similar to 1,700 Da) as a sole carbon source. Atomic force microscopy (AFM) showed the biofilm's 3-D developmental patterns and significantly increased Young's modulus of the LDPE surface after microbial treatment. Most of the viable bacteria attached to biofilms rather than media, which suggested their ability to utilize LDPE. Absorption bands of carbonyl, alkenyl, acyl, ester, primary-secondary alcohol, alkene groups and nitric oxides were found on the treated LDPE particles using Fourier-transform infrared spectroscopy. Fourier transform-ion cyclotron resonance mass spectrometry of the media indicated compositional shifts of the compounds after treatment (i.e., increase in the degree of unsaturation and increment in oxygen-to-carbon ratio) and presence of unsaturated hydrocarbons, polyketides, terpenoids, aliphatic/peptides, dicarboxylic acids, lipid-like compounds were hinted. The plastic degrading abilities of Bacillus siamensis ATKU1 suggest its probable application for large scale plastic bioremediation facility.
机译:将低密度聚乙烯(LDPE)降解细菌菌株(ATKU1)与来自塑料倾卸部位的塑料倾卸部位分离(与均匀的熊霉菌kctc 13613(t)类似,以研究微薄(<5mm)和微生物之间的相互作用。发现该菌株(通过扫描电子显微镜)以在其与LDPE(AVG型和AVG类似于4,000da和Avg等4,000da和Avg的Avg.M-N类似于1,700da)之后在微塑性表面上形成生物膜。原子力显微镜(AFM)显示了生物膜的3-D发育模式,并且在微生物处理后的LDPE表面的杨氏模量显着增加。大多数活细菌附着在生物膜而不是媒体上,这表明他们利用LDPE的能力。使用傅立叶变换红外光谱法在处理的LDPE颗粒上发现羰基,链烯基,酰基,酯,初级仲醇,烯烃,烯烃和一氧化物的吸收带。傅里叶变换离子回旋介质的介质的介质表明化合物在处理后的组成变换(即,不饱和度和氧与碳比中的增量增加)和不饱和烃,聚酮化合物,萜类化合物,脂肪族/肽,二羧酸,脂质样化合物暗示。 Bacillus Siamensis Atku1的塑性降解能力提出了大规模塑料生物修复设施的可能性。

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  • 来源
    《Journal of Hazardous Materials 》 |2021年第5期| 124516.1-124516.11| 共11页
  • 作者单位

    Korea Univ Div Environm Sci & Ecol Engn 145 Anam Ro Seoul 02841 South Korea;

    Sogang Univ Dept Chem 35 Baekbeom Ro Seoul 04107 South Korea;

    Korea Univ Res Inst Nat Sci Dept Chem 145 Anam Ro Seoul 02841 South Korea;

    Korea Univ Div Environm Sci & Ecol Engn 145 Anam Ro Seoul 02841 South Korea;

    Korea Univ Div Environm Sci & Ecol Engn 145 Anam Ro Seoul 02841 South Korea;

    Sogang Univ Dept Chem 35 Baekbeom Ro Seoul 04107 South Korea;

    Korea Univ Res Inst Nat Sci Dept Chem 145 Anam Ro Seoul 02841 South Korea;

    Korea Univ Div Environm Sci & Ecol Engn 145 Anam Ro Seoul 02841 South Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    LDPE; Biofilm; Microplastics; Biodegradation; Van Krevelen;

    机译:LDPE;生物膜;微塑料;生物降解;van Krevelen;
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