共 5 条
Biodegradability of algal-derived organic matter in a large artificial lake by using stable isotope tracers
被引:0
|作者:
Yeonjung Lee
Bomi Lee
Jin Hur
Jun-Oh Min
Sun-Yong Ha
Kongtae Ra
Kyung-Tae Kim
Kyung-Hoon Shin
机构:
[1] Hanyang University,Department of Marine Sciences and Convergent Technology
[2] Sejong University,Department of Environment and Energy
[3] Korea Polar Research Institute,Division of Polar Ocean Environment Research
[4] Korea Institute of Ocean Science and Technology,Marine Environment and Conservation Research Division
来源:
Environmental Science and Pollution Research
|
2016年
/
23卷
关键词:
Non-biodegradable organic matter;
Stable isotope labeling;
Phytoplankton;
Periphytic algae;
Biodegradability;
PARAFAC;
D O I:
暂无
中图分类号:
学科分类号:
摘要:
In order to understand the biodegradability of algal-derived organic matter, biodegradation experiments were conducted with 13C and 15N-labeled natural phytoplankton and periphytic algal populations in experimental conditions for 60 days. Qualitative changes in the dissolved organic matter were also determined using parallel factor analysis and the stable carbon isotopic composition of the hydrophobic dissolved organic matter through the experimental period. Although algal-derived organic matter is considered to be easily biodegradable, the initial amounts of total organic carbon newly produced by phytoplankton and periphytic algae remained approximately 16 and 44 % after 60 days, respectively, and about 22 and 43 % of newly produced particulate nitrogen remained. Further, the dissolved organic carbon derived from both algal populations increased significantly after 60 days. Although the dissolved organic matter gradually became refractory, the contributions of the algal-derived organic matter to the dissolved organic matter and hydrophobic dissolved organic matter increased. Our laboratory experimental results suggest that algal-derived organic matter produced by phytoplankton and periphytic algae could contribute significantly to the non-biodegradable organic matter through microbial transformations.
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页码:8358 / 8366
页数:8
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