Effect of carbon source derived from macrophytes on microbial denitrification in constructed wetlands: Role of plant species

被引:0
|
作者
Wang Q. [1 ]
Liu Q. [1 ]
Hu Y. [1 ]
Ding J. [1 ]
Ma Q. [1 ]
Zong K. [1 ]
Yang Z. [2 ]
机构
[1] College of Geography and Environment, Collaborative Innovation Center of Human-Nature and Green Development in Universities of Shandong, Shandong Normal University, Jinan
[2] College of Environmental Science and Engineering, Peking University, Beijing
关键词
Carbon source; Constructed wetlands; Microbial denitrification; Plant species;
D O I
10.1016/j.biteb.2019.100217
中图分类号
学科分类号
摘要
Organic matters derived from macrophytes can serve as carbon source in microbial denitrification. In this study, three macrophyte species, namely of macrophytes, Phragmites australis (PA), Acorus calamus (AC), and Scirpus tabernaemontani (ST), were planted in constructed wetlands. The root exudates were extracted, and their effects on microbial denitrification were investigated. Results showed that root exudate release rates were the highest in AC (17.4 μg·g−1 root dry mass [DM]·h−1), followed by ST (15.9 μg·g−1 root DM·h−1) and PA (10.6 μg·g−1 root DM·h−1). The NO3 − transformation efficiency was positively correlated to the amount of root exudation (PA: 9.72%, ST: 33.81%, and AC: 37.88%). However, the contributions of root exudation for bacterial denitrification followed the trend PA (54.76%) > ST (53.19%) > AC (29.19%). The copy numbers of NO3 −-reducing bacteria gene in PA, ST, and AC were 1.62 × 109, 2.15 × 109, and 2.18 × 109 copies·g−1 soil, which was positively correlated to the root exudation. © 2019
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