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[刚毛藻属分解对覆水磷浓度及形态的影响]

[Influence of decomposition of Cladophora sp. on phosphorus concentrations and forms in the overlying water].

作者信息

Hou Jin-Zhi, Wei Quan, Gao Li, Sun Wei-Ming

机构信息

Ocean School, Yantai University, Yantai 264005, China.

出版信息

Huan Jing Ke Xue. 2013 Jun;34(6):2184-90.

Abstract

Sediments were sampled in the dominated zone of Cladophora sp. in Rongcheng Swan Lake, and cultivated with algae in the laboratory to reveal the influence of Cladophora decomposition on concentrations and forms of phosphorus in the overlying water. Concentrations of total phosphorus (TP), dissolved total phosphorus (DTP), soluble reactive phosphorus (SRP), particulate phosphorus (PP) and dissolved organic phosphorus (DOP) in overlying water were investigated, and some physicochemical parameters, such as dissolved oxygen (DO), pH and conductivity were monitored during the experiment. In addition, the influence of algae decomposition on P release from sediments was analyzed. Due to the decomposition of Cladophora, DO concentration in the overlying water declined remarkably and reached the anoxic condition (0-0.17 mg x L(-1)). The pH value of different treatments also decreased, and treatments with algae reduced by about 1 unit. Concentrations of TP and different P forms all increased obviously, and the increasing extent was larger with the adding algae amount. TP concentrations of different treatments varied from 0.04 mg x L(-1) to 1.34 mg x L(-1). DOP and PP were the main P forms in the overlying water in algae without sediments treatments, but SRP concentrations became much higher in algae with sediments treatments. The result showed that P forms released from decomposing Cladophora were mainly DOP and PP, and the Cladophora decomposition could also promote the sediments to release P into the overlying water.

摘要

在荣成天鹅湖绿藻属(Cladophora sp.)的优势区域采集沉积物,并在实验室中与藻类一起培养,以揭示绿藻分解对上覆水中磷的浓度和形态的影响。研究了上覆水中总磷(TP)、溶解态总磷(DTP)、可溶性活性磷(SRP)、颗粒态磷(PP)和溶解态有机磷(DOP)的浓度,并在实验过程中监测了一些理化参数,如溶解氧(DO)、pH值和电导率。此外,分析了藻类分解对沉积物中磷释放的影响。由于绿藻的分解,上覆水中的DO浓度显著下降,达到缺氧状态(0 - 0.17 mg·L⁻¹)。不同处理的pH值也降低,有藻类的处理降低了约1个单位。TP和不同磷形态的浓度均明显增加,且随着藻类添加量的增加,增加幅度更大。不同处理的TP浓度在0.04 mg·L⁻¹至1.34 mg·L⁻¹之间变化。在无沉积物的藻类处理中,DOP和PP是上覆水中的主要磷形态,但在有沉积物的藻类处理中,SRP浓度变得更高。结果表明,分解的绿藻释放的磷形态主要是DOP和PP,绿藻分解还能促进沉积物向上覆水中释放磷。

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