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Environmental impact assessment of wood ash utilization in forest road construction and maintenance - A field study

机译:森林公路建设与养护中木灰利用的环境影响评估-实地研究

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摘要

The ever increasing use of wood material as fuel for green energy production requires innovative, environmentally safe strategies for recycling of the remaining wood ash. Utilizing wood ash in forest road construction and maintenance to improve mechanical stability has been suggested as a feasible recycling option. To investigate the environmental impact of wood ash application in forest road maintenance, a two-year field experiment was conducted at two Austrian forest sites (Kobernausserwald (KO) (soil pH 5.5) and Weyregg (WE) (pH 7.7)) differing in their soil chemical properties. Two different ashes, one produced by grate incineration (GA) and the other by fluidized bed incineration in a mixture with 15 vol% burnt lime (FBA), were incorporated in repeated road sections at a 15:85% (V/V) ash-to-soil rate. Leaching waters from the road body were collected and analyzed for 32 environmentally relevant parameters over two years. Upon termination of the experiment sub-road soil samples were collected and analyzed for ash-related changes in soil chemistry. Even though a larger number of parameters was affected by the ash application at the alkaline site (WE), we observed the most pronounced initial increases of pH as well as Al, As, Fe, Mn, Ni, Co, Cu, Mo, and NOJ concentrations in leachates beneath GA-treated road bodies at Kobernausserwald due to the lower soil buffer capacity at this site. Despite the observed effects our results indicate that when specific requirements are met (Le. appropriate ash quality, sufficient soil buffer capacity below the road body, and single time-point ash incorporation within several decades), wood ash application in forest road construction is generally environmentally acceptable.
机译:越来越多地使用木材作为绿色能源生产的燃料,需要创新,环保的策略来回收剩余的木灰。有人建议在森林公路建设和养护中使用木灰来提高机械稳定性,这是一种可行的回收选择。为了研究在森林公路养护中使用木灰的环境影响,在两个奥地利森林站点(Kobernausserwald(KO)(土壤pH 5.5)和Weyregg(WE)(pH 7.7))不同的地方进行了为期两年的野外试验土壤化学性质。将两种不同的灰烬(一种通过炉排焚烧(GA)产生,另一种通过流化床焚烧在与15%体积的生石灰(FBA)的混合物中产生)掺入重复的路段,灰分为15:85%(V / V)土比率。收集了来自车身的浸出水,并在两年内分析了32个与环境相关的参数。实验结束后,收集道路土壤样品并分析土壤化学中灰分相关的变化。即使在碱性位点(WE)施用灰分影响大量参数,我们也观察到pH值以及Al,As,Fe,Mn,Ni,Co,Cu,Mo和由于Kobernausserwald地区经过GA处理的公路车体下方的渗滤液中NOJ浓度较低,原因是该地点的土壤缓冲能力较低。尽管观察到了影响,但我们的结果表明,当满足特定要求时(例如,适当的灰烬质量,道路主体下方足够的土壤缓冲能力以及数十年之内的单一时间点灰烬掺入),通常在森林公路建设中使用木灰环保的。

著录项

  • 来源
    《The Science of the Total Environment》 |2016年第15期|711-721|共11页
  • 作者单位

    University of Natural Resources and life Sciences, Department of Forest and Soil Science, Institute of Soil Research, Konrad-Lorenzstrasse 24, A-3430 Tulln, Austria;

    University of Natural Resources and life Sciences, Department of Forest and Soil Science, Institute of Soil Research, Konrad-Lorenzstrasse 24, A-3430 Tulln, Austria;

    University of Natural Resources and life Sciences, Department of Forest and Soil Science, Institute of Soil Research, Konrad-Lorenzstrasse 24, A-3430 Tulln, Austria;

    University of Natural Resources and life Sciences, Department of Forest and Soil Science, Institute of Soil Research, Konrad-Lorenzstrasse 24, A-3430 Tulln, Austria,Austrian Agency for Health and Food Safety, Institute for Plant Protection Products, Department for Environmental Behaviour and Integrative Pest Management, Spargelfeldstrasse 191,1220 Vienna, Austria;

    University of Natural Resources and Life Sciences, Department of Forest and Soil Science, Institute of Forest Engineering, Peter Jordan-Strasse 82, A-1190 Vienna, Austria;

    University of Natural Resources and life Sciences, Department of Forest and Soil Science, Institute of Soil Research, Konrad-Lorenzstrasse 24, A-3430 Tulln, Austria;

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

    Heavy metals; Contamination; Lysimeter; Wood ash; Recycling; Forest road construction;

    机译:重金属;污染;测渗仪;木灰;回收;林道建设;

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