中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Mechanism of phosphorus mobility in sediments with larval (Propsilocerus akamusi) bioturbation

文献类型:期刊论文

作者Yan, Wenming; Chen, Musong; Liu, Ling; Wu, Tingfeng; Zhang, Yi; Wang, Han; Xigang, Xing; Fan, Kongming
刊名ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH
出版日期2020
卷号27期号:7页码:7538-7548
英文摘要The effects of chironomid larval (Propsilocerus akamusi) bioturbation on sediment phosphorus (P) mobility were studied over the course of 34 days using the indoor larval cultivation method on in situ sediment cores. High-resolution dialysis (HR-Peeper) and diffusive gradients in thin films (DGT) techniques were used to record fine-scale changes of soluble and DGT-labile P and iron (Fe) concentrations in the sediment. The larval-driven irrigation of the overlying water into their burrows significantly increased the oxygen penetration depth (OPD) and redox state (Eh) in sediments. In addition, the soluble and DGT-labile P and Fe decreased with the increase of OPD and Eh in larval-bioturbated sediments. The greatest decrease in the mean concentration of SRP, soluble Fe, and DGT-labile P in the Propsilocerus group was observed on Day 15 of the experiment, with a decrease by over half of the mean concentration of the control group. Furthermore, two-dimensional measurements of DGT-labile P concentration showed notable reductions of DGT-labile P around larval burrows. The DGT-induced fluxes in sediments (DIFS) model also exhibited a much longer response time (420 s) and a much higher rate of P adsorption (0.002 s(-1)) in the bioturbation sediments than those in the control sediments (116 s and 0.009 s(-1), respectively). A significant correlation was shown for DGT-labile P and DGT-labile Fe. We conclude that Fe(II) oxidation and its enhanced adsorption were the major mechanisms responsible for the decrease of soluble and DGT-labile P in sediments.
源URL[http://159.226.73.51/handle/332005/20208]  
专题中国科学院南京地理与湖泊研究所
推荐引用方式
GB/T 7714
Yan, Wenming,Chen, Musong,Liu, Ling,et al. Mechanism of phosphorus mobility in sediments with larval (Propsilocerus akamusi) bioturbation[J]. ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH,2020,27(7):7538-7548.
APA Yan, Wenming.,Chen, Musong.,Liu, Ling.,Wu, Tingfeng.,Zhang, Yi.,...&Fan, Kongming.(2020).Mechanism of phosphorus mobility in sediments with larval (Propsilocerus akamusi) bioturbation.ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH,27(7),7538-7548.
MLA Yan, Wenming,et al."Mechanism of phosphorus mobility in sediments with larval (Propsilocerus akamusi) bioturbation".ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH 27.7(2020):7538-7548.

入库方式: OAI收割

来源:南京地理与湖泊研究所

浏览0
下载0
收藏0
其他版本

除非特别说明,本系统中所有内容都受版权保护,并保留所有权利。