TY - JOUR
T1 - Kinetics of abiotic and biotic degradability of low-density polyethylene containing prodegradant additives and its effect on the growth of microbial communities
AU - Jakubowicz, Ignacy
AU - Yarahmadi, Nazdaneh
AU - Arthurson, Veronica
PY - 2011
Y1 - 2011
N2 - The kinetics of abiotic oxidation in the dark and the kinetics of biological mineralization in soil and in a compost environment of thermally oxidized LDPE were studied. It was demonstrated that different activation energies are obtained for the thermal oxidation, depending on the composition of the materials. Significantly higher levels of biodegradability have been obtained in a soil environment at 23 degrees C compared with the compost environment at 58 degrees C. After two years of mineralization, 91% conversion to carbon dioxide was obtained in the soil test, compared with 43% in the compost test. The differences between fungal, archaeal and bacterial community structures in soil and compost after 607 days of biodegradability assay were mapped out. It was found that the most dominant bacterial and fungal terminal restriction fragments (TRFs) in the compost containing the test material are significantly different from the TRFs in the other environments. (C) 2011 Elsevier Ltd. All rights reserved.
AB - The kinetics of abiotic oxidation in the dark and the kinetics of biological mineralization in soil and in a compost environment of thermally oxidized LDPE were studied. It was demonstrated that different activation energies are obtained for the thermal oxidation, depending on the composition of the materials. Significantly higher levels of biodegradability have been obtained in a soil environment at 23 degrees C compared with the compost environment at 58 degrees C. After two years of mineralization, 91% conversion to carbon dioxide was obtained in the soil test, compared with 43% in the compost test. The differences between fungal, archaeal and bacterial community structures in soil and compost after 607 days of biodegradability assay were mapped out. It was found that the most dominant bacterial and fungal terminal restriction fragments (TRFs) in the compost containing the test material are significantly different from the TRFs in the other environments. (C) 2011 Elsevier Ltd. All rights reserved.
KW - Degradable polyethylene
KW - Accelerated aging
KW - Biodegradation
KW - PCR (polymerase chain reaction)
KW - TRF (terminal restriction fragments)
KW - T-RFLP (terminal-restriction fragment length polymorphism)
KW - Degradable polyethylene
KW - Accelerated aging
KW - Biodegradation
KW - PCR (polymerase chain reaction)
KW - TRF (terminal restriction fragments)
KW - T-RFLP (terminal-restriction fragment length polymorphism)
UR - https://res.slu.se/id/publ/57820
U2 - 10.1016/j.polymdegradstab.2011.01.031
DO - 10.1016/j.polymdegradstab.2011.01.031
M3 - Journal article
SN - 0141-3910
VL - 96
SP - 919
EP - 928
JO - Polymer Degradation and Stability
JF - Polymer Degradation and Stability
IS - 5
ER -