Isolation of a thermophilic bacterium capable of low-molecular-weight polyethylene degradation

被引:0
作者
Hyun Jeong Jeon
Mal Nam Kim
机构
[1] Sangmyung University,Department of Life Science
来源
Biodegradation | 2013年 / 24卷
关键词
Polyethylene; Degradation; Bacterium; Isolation; Compost;
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摘要
A thermophilic bacterium capable of low-molecular-weight polyethylene (LMWPE) degradation was isolated from a compost sample, and was identified as Chelatococcus sp. E1, through sequencing of the 16S rRNA gene. LMWPE was prepared by thermal degradation of commercial PE in a strict nitrogen atmosphere. LMWPE with a weight-average-molecular-weight (Mw) in the range of 1,700–23,700 was noticeably mineralized into CO2 by the bacterium. The biodegradability of LMWPE decreased as the Mw increased. The low molecular weight fraction of LMWPE decreased significantly as a result of the degradation process, and thereby both the number-average-molecular-weight and Mw increased after biodegradation. The polydispersity of LMWPE was either narrowed or widened, depending on the initial Mw of LMWPE, due to the preferential elimination of the low molecular weight fraction, in comparison to the high molecular weight portion. LMWPE free from an extremely low molecular weight fraction was also mineralized by the strain at a remarkable rate, and FTIR peaks assignable to C–O stretching appeared as a result of microbial action. The FTIR peaks corresponding to alkenes also became more intense, indicating that dehydrogenations occurred concomitantly with microbial induced oxidation.
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页码:89 / 98
页数:9
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[1]  
Balasubramanian V(2010)High-density polyethylene(HDPE)-degrading potential bacteria from marine ecosystem of Gulf of Mannar, India Lett Appl Microbiol 51 205-211
[2]  
Natarajan K(2003)Environmental biodegradation of polyethylene Polym Degrad Stab 81 441-452
[3]  
Hemambika B(2010)Enzyme-mediated biodegradation of heat treated commercial polyethylene by Polym Degrad Stab 95 195-200
[4]  
Ramesh N(2003) species Polym Degrad Stab 81 341-351
[5]  
Sumathi CS(2010)Biodegradation of thermally-oxidized, fragmented low-density polyethylenes Polym Degrad Stab 95 1106-1114
[6]  
Kottaimuthu R(2010)Oxidation and biodegradation of polyethylene films containing pro-oxidant additives: synergistic effects of sunlight exposure, thermal aging and fungal biodegradation Polym Degrad Stab 95 1011-1021
[7]  
Rajash Kannan V(2004)Comparison of the biodegradability of various polyethylene films containing pro-oxidant additives Appl Microbiol Biotechnol 65 97-104
[8]  
Bonhomme S(2005)Colonization, biofilm formation and biodegradation of polyethylens by a strain J Appl Microbiol 98 1093-1100
[9]  
Cuer A(2010)Biodegradation of polyethylene by the thermophilic bacterium Polym Degrad Stab 95 1794-1799
[10]  
Delort A-M(2002)Aerobic biodegradation of calcium carbonate filled polyethylene film containing pro-oxidant additives Chemosphere 46 879-885