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首页> 外文期刊>Fundamental and applied limnology >Comparison of efficacy of two p-inactivation agents on sediments from different regions of lake taihu: Sediment core incubations
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Comparison of efficacy of two p-inactivation agents on sediments from different regions of lake taihu: Sediment core incubations

机译:两种p型灭活剂对太湖不同地区沉积物的功效比较:沉积物核心孵化。

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摘要

Lake Taihu, the third largest shallow freshwater lake in China, has experienced massive algal blooms caused by nutrient loading. Sediment capping experiments were undertaken to assess the efficacy of two P-inactivation agents (Algalblock and Phoslock) to reduce internal phosphorus loading. Intact sediment cores were collected from three sites in Lake Taihu, which represent different trophic states and ecological types of lake. The experiments were carried out for 60 days and yielded the following findings: (1) Phoslock has a higher efficiency than Algalblock at blocking P release from sediment. (2) The efficiencies of both the P-inactivation agents are related to the dosage (range, 100-1000g/m2) of agents in the different regions. In Dapu and Meiliang where there is a higher P content in the sediment, the 1000g/m ~2 treatment of both Algalblock and Phoslock had the highest P-removal efficacy. In Eastern Taihu Bay where there is a higher organic matter content, the 1000g/m~2 dosage of Phoslock had the highest P-removal efficacy compared to other dosage levels, whilst the 100 g/m~2 dosage of Algalblock had the highest efficacy. (3) Both agents had problematic side effects, with the potential to alter the microbial processes of coupled nitrification and denitrification and also to induce active element leaking from agents.
机译:太湖是中国第三大浅水湖泊,由于养分负荷而经历了大规模的藻华。进行沉积物封盖实验以评估两种P灭活剂(Algalblock和Phoslock)减少内部磷负荷的功效。从太湖的三个地点收集了完整的沉积物核,它们代表了湖泊的不同营养状态和生态类型。实验进行了60天,得出以下发现:(1)Phoslock在阻止P从沉积物中释放方面比Algalblock具有更高的效率。 (2)两种P灭活剂的效率均与不同地区药剂的剂量(范围100-1000g / m2)有关。在沉积物中P含量较高的大埔和梅梁,以Algblock和Phoslock进行1000g / m〜2处理的除磷效果最高。在有机物含量较高的太湖湾东部,磷磷的除磷效果最高,其他剂量水平均为1000g / m〜2,而藻石块的磷去除率最高,为100 g / m〜2。 。 (3)两种药物都有不良的副作用,可能改变耦合硝化和反硝化作用的微生物过程,还可能导致活性元素从药物中泄漏。

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