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Distribution and speciation of phosphorus in sediments of Dongping Lake, North China

机译:华北东平湖沉积物中磷的分布与形态

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摘要

Dongping Lake is an important regulator for the Eastern Route of South-to-North Water Diversion Project in China, and the water quality assurance of it is of great importance. To investigate the distribution characteristics and burial process of phosphorus (P) in Dongping Lake as well as their relationship with regional economic development and human activities, 33 spatially distributed surface sediment samples and one lake sediment core were extracted from Dongping Lake. A harmonized procedure for the P forms in freshwater sediments developed by the European Programme, Standards, Measurements, and Testing was used in this paper. The results show that NaOH-P (P bound to Al, Fe, Mn oxides or hydroxides), HCl-P (Ca-bound P), inorganic phosphorus (IP), organic phosphorus (OP), and total phosphorus (TP) in the surface sediments show a strong spatial variability. The highest NaOH-P and OP concentrations were observed in the eastern and south-eastern region of the lake and decreased gradually away from the mouth area of Dawen River. We deduced that anthropogenic input via the Dawen River is the main contributor. The higher concentration of HCl-P occurred in the north-west region of the lake and increased in a gradient away from the mouth area of Dawen River, and this pattern of distribution could be related to grain-size effects and higher transport energies close to riverine inlets. Pollution reflected by phosphorus in the core sediments of Dongping Lake is well consistent with the economic development history of Dongping County. From the beginning of the 20th century to the middle 1970s, the concentrations of each P speciation did not vary largely and runoff of the Yellow River mainly contributed to the P accumulation in the sediment, which might reflect the background values of them in the lake in pre-industrial period. The stable Mz (mean grain size), low loss-on-ignition (LOI), and high sedimentary flux also support this. The rapid increase of NaOH-P and OP at 10-0 cm (especially 5-0 cm) indicates the enhancing anthropogenic eutrophication since the middle 1970s. The LOI peak period and a coarsening of particle size also support this interpretation. However, the decreasing of TP and HCl-P was attributed to the change in sediment supply. As due to construction of dams around the lake, runoff of the Dawen River mainly contributed to the P accumulation in the sediment during this period.
机译:东平湖是中国南水北调东线工程的重要监管者,保证其水质十分重要。为调查东平湖磷(P)的分布特征,埋藏过程及其与区域经济发展和人类活动的关系,从东平湖提取了33个空间分布的地表沉积物样品和1个湖泊沉积物核心。本文使用了由欧洲计划,标准,测量和测试开发的统一的淡水沉积物中P形式的程序。结果表明,NaOH-P(与铝,铁,锰的氧化物或氢氧化物结合的磷),HCl-P(与Ca结合的磷),无机磷(IP),有机磷(OP)和总磷(TP)表层沉积物表现出很强的空间变异性。在湖的东部和东南部观察到最高的NaOH-P和OP浓度,并在远离大汶河口的区域逐渐降低。我们推论大汶河的人为输入是主要贡献者。较高浓度的HCl-P发生在该湖的西北部,并在远离大汶河河口的区域呈梯度增加,这种分布方式可能与晶粒大小效应和较高的运输能量有关。河流入口。磷在东平湖核心沉积物中反映的污染与东平县的经济发展历史相吻合。从20世纪初到1970年代中期,每种P形态的浓度并没有很大的变化,黄河径流主要是沉积物中P的积累的原因,这可能反映了它们在湖中的背景值。工业化前时期。稳定的Mz(平均晶粒度),低的点火失重(LOI)和高的沉积通量也支持这一点。在1970年代中期以来,NaOH-P和OP在10-0 cm(特别是5-0 cm)处迅速增加,这表明人为富营养化得到增强。 LOI峰期和粒度的粗化也支持这种解释。但是,TP和HCl-P的下降是由于沉积物供应的变化。由于湖周围水坝的兴建,大汶河的径流主要是造成该时期沉积物中磷的积累。

著录项

  • 来源
    《Environmental earth sciences》 |2014年第8期|3173-3182|共10页
  • 作者单位

    Key Laboratory of Coast and Island Development of Ministry of Education, School of Geographic and Oceanographic Sciences of Nanjing University, Nanjing 210093, China;

    City and Environment College of Jiangsu Normal University, Xuzhou 221116, China,Shandong Key Laboratory of Soil Conservation and Environmental Protection of Linyi University, Linyi 276005, China;

    Institute for Cultural Heritage, Shandong University, Jinan 250100, China;

    Key Laboratory of Coast and Island Development of Ministry of Education, School of Geographic and Oceanographic Sciences of Nanjing University, Nanjing 210093, China;

    School of Environment and Planning of Liaocheng University, Liaocheng 252000, China;

    School of Environment and Planning of Liaocheng University, Liaocheng 252000, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sediments; Phosphorus speciation; Distribution characteristics; Eutrophication; Dongping Lake;

    机译:沉积物;磷形态;分布特征;富营养化东平湖;

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