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Self-Organizing Map Analysis of Planted Soil Infiltration Systems for Treatment of Log Yard Runoff

机译:人工土壤入渗系统处理原木场径流的自组织图分析

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摘要

Infiltration through a soil system planted with four different species was assessed as a sustainable treatment method for logyard runoff at a field-scale experimental site in Sweden. Runoff was infiltrated through soil planted with Alnus glutinosa (L.) Gärtner (common alder), Salix schwerinii × viminalis (willow variety "Gudrun"), Lolium perenne (L.) (rye grass), and Phalaris arundinacea (L.) (reed canary grass). Analyses of variance and t tests showed no significant differences in treatment when the different plants were compared with each other, and there were also no significant differences between the tree and the grass species. The infiltration treatment was effective in reducing total organic carbon and total phosphorus in the runoff even when the loads on the infiltration system increased over time. The self-organizing map (SOM) model was applied to assess the relationships between different water quality variables and to predict total nitrogen (TN) and total phosphorus (TP) concentrations. A supplementary correlation analysis confirmed the key relationships among variables revealed by the SOM. The SOM model performed very well in predicting TN and TP concentrations with the help of other water quality variables, which can be measured more cost effectively. [PUBLICATION ABSTRACT]
机译:在瑞典的一个田间规模的试验场上,评估了通过种植四种不同物种的土壤系统的渗透性,作为可持续的处理木料径流的方法。径流通过种植有Al木(L.)Gärtner(普通al木),柳柳(Salix schwerinii×viminalis)(柳木品种“ Gudrun”),黑麦草(L.)(黑麦草)和Ph草(Palaris arundinacea(L.)(芦苇金丝雀草)。方差分析和t检验表明,将不同植物进行比较时,处理无显着差异,树木和草种之间也无显着差异。即使渗透系统的负荷随时间增加,渗透处理也有效减少了径流中的总有机碳和总磷。自组织图(SOM)模型用于评估不同水质变量之间的关系,并预测总氮(TN)和总磷(TP)浓度。补充的相关分析证实了SOM揭示的变量之间的关键关系。在其他水质变量的帮助下,SOM模型在预测总氮和总磷浓度方面表现非常出色,可以更经济有效地进行测量。 [出版物摘要]

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  • 来源
    《Forest Science》 |2009年第2期|p.183-188|共6页
  • 作者单位

    Åsa Hedmark, Swedish University of Agricultural Sciences - asa.hedmark@spm.slu.se. Liang Zhang, Wuhan University - whu7730@yahoo.com.cn. Miklas Scholz, The University of Edinburgh, Institute for Infrastructure and Environment, School of Engineering, The King's Buildings, Edinburgh, Scotland EH9 3JL, UK- Phone: 0044-1316506780, Fax: 011-0044-1316506554, m.scholz@ed.ac.uk. Pär Aronsson, Swedish University of Agricultural Sciences - par.aronsson@vpe.slu.se. Torbjörn Elowson, Swedish University of Agricultural Sciences - torbjoorn.elowson@sprod.slu.se.Acknowledgments: We thank Setta Trävaror AB, Karl Erik Önnesjö's Foundation for Scientific Research and Development, and The Royal Academy of Engineering (travel grant to Sweden to enhance research collaboration with Scandinavia) for their financial support. Technical support was provided by Richard Childs and Gunnar Torstensson.,;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-17 13:46:00

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