Study on the Degradation of a Semi-Synthetic Lignin-Acrylic Acid Hydrogel with Common Bacteria Found in Natural Attenuation Processes

被引:0
作者
Jimenez-Torres, Humberto D. [1 ]
Hernandez-Olmos, Saira L. [1 ]
Reynaga-Delgado, Eire [2 ]
Orozco-Guareno, Eulogio [1 ]
机构
[1] Univ Guadalajara, Ctr Univ Ciencias Exactas & Ingn, Dept Quim, Lab Fisicoquim, Blvd Marcelino Garcia Barragan 1451, Guadalajara 44430, Jalisco, Mexico
[2] Univ Guadalajara, Ctr Univ Ciencias Exactas & Ingn, Dept Farmacobiol, Blvd Marcelino Garcia Barragan 1451, Guadalajara 44430, Jalisco, Mexico
关键词
biodegradation; hydrogel; bacteria; lignin; NETWORK;
D O I
10.3390/polym15122588
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
In this study, lignin was chemically modified to promote hydrogel degradation as a source of carbon and nitrogen for a bacterial consortium consisting of P. putida F1, B. cereus and, B. paramycoides. A hydrogel was synthesized using acrylic acid (AA), acrylamide (AM), and 2-acrylamido-2-methyl-1-propanesulfonic acid (AMPS) and cross-linked with the modified lignin. The structural changes and mass loss in the hydrogel, as well as its final composition, were evaluated as functions of the growth of the selected strains in a culture broth with the powdered hydrogel. The average loss was 18.4% wt. The hydrogel was characterized using FTIR spectroscopy, scanning electronic microscopy (SEM), elemental analysis (EA), and thermogravimetric analysis (TGA) before and after bacterial treatment. FTIR showed that the carboxylic groups present in both the lignin and the acrylic acid of the hydrogel decreased during bacterial growth. The bacteria showed a preference for the biomaterial components of the hydrogel. SEM demonstrated superficial morphological changes in the hydrogel. The results reveal that the hydrogel was assimilated by the bacterial consortium while preserving the water retention capacity of the material and that the microorganisms carried out a partial biodegradation of the hydrogel. The results of the EA and TGA confirm that the bacterial consortium not only degraded the biopolymer (lignin), but also used the synthetic hydrogel as a carbon source to degrade its polymeric chains and modified original properties. This modification with lignin as a crosslinker (which is a waste product of the paper industry) is therefore proposed to promote hydrogel degradation.
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页数:13
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共 28 条
  • [1] Abd Rahman RNZ, 2006, J MICROBIOL, V44, P354
  • [2] A new nanosized host-guest supramolecular coordination polymer based on copper cyanide network and 1,7-diaminoheptane: Comparative structure study and catalytic activity
    Abdou, Safaa N.
    Etaiw, Safaa Eldin H.
    Mersal, Gaber A. M.
    [J]. JOURNAL OF MOLECULAR STRUCTURE, 2021, 1244 (1244)
  • [3] Development of novel assays for lignin degradation: comparative analysis of bacterial and fungal lignin degraders
    Ahmad, Mark
    Taylor, Charles R.
    Pink, David
    Burton, Kerry
    Eastwood, Daniel
    Bending, Gary D.
    Bugg, Timothy D. H.
    [J]. MOLECULAR BIOSYSTEMS, 2010, 6 (05) : 815 - 821
  • [4] Hydrogel: Preparation, characterization, and applications: A review
    Ahmed, Enas M.
    [J]. JOURNAL OF ADVANCED RESEARCH, 2015, 6 (02) : 105 - 121
  • [5] Synergistic growth of Bacillus and Pseudomonas and its degradation potential on pretreated polypropylene
    Aravinthan, Adithan
    Arkatkar, Ambika
    Juwarkar, Asha A.
    Doble, Mukesh
    [J]. PREPARATIVE BIOCHEMISTRY & BIOTECHNOLOGY, 2016, 46 (02) : 109 - 115
  • [6] Isolation and characterization of bacterial strains Paenibacillus sp and Bacillus sp for kraft lignin decolorization from pulp paper mill waste
    Chandra, Ram
    Singh, Shail
    Reddy, M. M. Krishna
    Patel, D. K.
    Purohit, Hemant J.
    Kapley, Atya
    [J]. JOURNAL OF GENERAL AND APPLIED MICROBIOLOGY, 2008, 54 (06) : 399 - 407
  • [7] Kraft lignin biodegradation by Novosphingobium sp B-7 and analysis of the degradation process
    Chen, Yuehui
    Chai, Liyuan
    Tang, Chongjian
    Yang, Zhihui
    Zheng, Yu
    Shi, Yan
    Zhang, Huan
    [J]. BIORESOURCE TECHNOLOGY, 2012, 123 : 682 - 685
  • [8] Progress of reduction of graphene oxide by ascorbic acid
    De Silva, K. Kanishka H.
    Huang, Hsin-Hui
    Yoshimura, Masamichi
    [J]. APPLIED SURFACE SCIENCE, 2018, 447 : 338 - 346
  • [9] DellAmbrogio G., 2019, ECOTOXICOLOGICAL EFF
  • [10] Feng LJ, 2018, J APPL POLYM SCI, V135, DOI [10.1002/app.45886, 10.1002/APP.45886]