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首页> 外文期刊>Journal of Environmental Engineering and Science >Dissolved and particulate phosphorus concentration and export patterns in headwater streams draining Boreal Plain watersheds one year after experimental forest harvest and post-harvest silvicultural activities
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Dissolved and particulate phosphorus concentration and export patterns in headwater streams draining Boreal Plain watersheds one year after experimental forest harvest and post-harvest silvicultural activities

机译:在经过实验性森林采伐和收获后的造林活动一年后,排入北方平原流域的源头溪流中溶解的和颗粒态的磷浓度及出口方式

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摘要

This study examined total dissolved (TDP) and particulate phosphorus (PP) concentration and export in ninenheadwater streams draining Boreal Plain forests in Alberta, Canada, during the growing season and autumn before and innthe first year after winter harvest in four of the watersheds. Mechanical and chemical site preparation was also conductednbefore and during the post-harvest sampling period. During the growing season, TDP and PP concentrations in streamsndraining harvested watersheds were higher than in the reference streams at storm peaks (P £ 0.08) and along the fallingnlimbs of storm flows (P £ 0.03). We postulate that forestry activities enhanced TDP leaching from watershed soils afternthey became saturated. This promoted the growth of periphyton in streams, which subsequently sloughed off during highnflows. In autumn, TDP concentrations were higher in streams draining harvested watersheds along the rising limb, at thenstorm peaks, and along the falling limbs (P £ 0.05). However, PP concentrations in autumn were similar in harvested andnreference streams along the rising limb (P = 0.19) and were lower in harvested streams at the storm peaks and along thenfalling limbs (P £ 0.08). No differences in TDP or PP concentration were detected between harvested and referencenstreams during baseflow-dominated periods. Mean TDP and PP export coefficients tended to be higher in the post-harvestnthan pre-harvest year in both reference and harvested watersheds. After normalization to precipitation inputs, this changen(‘‘impact ratio’’) was 153% and 130% higher in harvested than reference watersheds for TDP and PP, respectivelyn(P £ 0.08). The TDP impact ratio and percent of the watershed area cut were positively related (r2 = 0.95, P = 0.02). An30 m riparian buffer strip in two harvested watersheds did not appear to reduce the harvest response.
机译:这项研究调查了在四个分水岭的生长季节,冬季收获之前和之后的第一年和秋天期间,加拿大艾伯塔省北部平原森林的九水源河中的总溶解(TDP)和颗粒磷(PP)浓度以及出口情况。在收获后和收获后的采样期间也进行了机械和化学现场准备。在生长期,在降雨高峰期(P£0.08)和沿暴雨流的下肢(P£0.03),流失灌溉的集水区的TDP和PP浓度高于参考河流。我们假设林业活动增强了流域土壤的TDP淋溶,然后使其饱和。这促进了溪流中附生植物的生长,其随后在高流量时脱落。秋季,沿上升的肢体,随后的暴风雨高峰和沿下降的肢体排放收获的集水区的溪流中的TDP浓度较高(P£0.05)。然而,秋季的PP浓度在上升和上升沿的采集和参考流中相似(P = 0.19),而在风暴高峰期和下降沿的采集流中则较低(P£0.08)。在基流为主的时期,在收获流和参考流之间未检测到TDP或PP浓度的差异。参考流域和收获流域的平均TDP和PP出口系数在收成后的年均高于收成前的年。将降水量归一化后,该变化量(“影响比”)分别比TDP和PP的参考集水区高153%和130%n(P£0.08)。 TDP影响比与流域截面积百分比呈正相关(r2 = 0.95,P = 0.02)。在两个收获的流域中一条长达30 m的河岸缓冲带似乎没有减少收获的响应。

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  • 来源
    《Journal of Environmental Engineering and Science》 |2008年第s1期|p.63-77|共15页
  • 作者单位

    E.E. Prepas.2 Faculty of Forestry and the Forest Environment, Lakehead University, Thunder Bay, ON P7B 5E1, Canada;

    Department ofBiological Sciences, University of Alberta, Edmonton, AB T6G 2E9, Canada.J.M. Burke. Faculty of Forestry and the Forest Environment, Lakehead University, Thunder Bay, ON P7B 5E1, Canada.G. Putz. Department of Civil and Geological Engineering, University of Saskatchewan, Saskatoon, SK S7N 5A9, Canada.D.W. Smith. Department of Civil and Environmental Engineering, University of Alberta, Edmonton, AB T6G 2W2, Canada.Written discussion of this article is welcomed and will be received by the Editor until 31 January 2009.1This article is one of a selection of papers published in this Supplement from the Forest Watershed and Riparian Disturbance(FORWARD) Project.2Corresponding author (e-mail: eprepas@lakeheadu.ca).;

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

    phosphorus, stream, watershed, boreal forest, forest harvest, mechanical site preparation.;

    机译:磷;溪流;分水岭;北方森林;森林采伐;机械整地。;

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