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Evaluating Plant Species Suitability for a Substrate-Free Tropical Green Roof

机译:评估植物物种适合于无基质的热带绿色屋顶

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摘要

Greenroofs reduce building exterior-interior thermal flux and mitigate high internal air temperatures, especially in tropical climates. Tropical greenroofs are given little attention and their use remains restricted to a very low percentage of roofs due to high costs compared to traditional roofs, weight overload (mainly due to the chosen substrate) and potential waterproofing problems. We here present an alternative greenroof technique based on a reduction of the current Modern Extensive Greenroof (MEG) technique to half of its original layers. The feasibility of superficially rooting plant species from extreme habitats was tested in full scale on a single family house over three consecutive years. The innovative horticultural system is based on asubstrate-free method, which has several advantages over traditional systems, including easier maintenance and minimal total weight. The reduced layout also lowers material and labor costs, facilitating widespread retrofitting of installations, mainly onlow income houses in urban areas of developing countries. From a sparse initial planting, total coverage was attained in two years and 218 taxa, belonging to 20 families and various growth types, were successfully grown on the new greenroof system. Species were able to survive and grow even though signs of dynamic photo inhibit ion were detected. The viability of the plant assemblage together with the ability to store water due to a high degree of succulence among species indicates a broad potential for research into the use of cultivated epiphytic, lithophytic and psammophilous flora for the installation of tropical greenroofs.
机译:Greenroofs减少了建筑物外部热通量,减轻了高内部空气温度,特别是在热带气候中。热带Greenroofs很少受到关注,并且由于与传统屋顶的成本高,重量过载(主要是由于所选择的底物)和潜在的防水问题,它们的使用仍然受到限制为极低的屋顶百分比。我们在这里提出了一种基于当前现代广泛的绿色(MEG)技术的减少到其原始层的一半的替代Greenroof技术。连续三年的单个家庭房屋全规模地测试了来自极端栖息地的海绵生根植物物种的可行性。该创新的园艺系统基于无用途的方法,它与传统系统具有多种优势,包括更容易维护和总重量的总重量。降低的布局也降低了材料和劳动力成本,促进了应用的广泛改装,主要是发展中国家城市地区的收入房屋。从稀疏的初始种植中,两年内的总覆盖率达到了218个分类群,属于20个家庭和各种增长类型,在新的Gearlroof系统上成功地增长。即使检测到动态照片抑制离子的迹象,物种也能生存并增长。植物组合的可行性以及物种之间具有高度的多汁素质的能力表明,用于研究使用培养的内霉素,鳞片菌和牛奶体植物群进行热带Greenroof的使用的广泛潜力。

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  • 作者单位

    Curatorship of Living Collections Research Institute of Rio de Janeiro Botanical Garden Rua Pacheco Leao 915 Bromelidrio Horto Rio de Janeiro RJ Brasil CEP 22460-030;

    Structural Botany Laboratory Research Institute of Rio de Janeiro Botanical Garden Brazil;

    Plant Ecophysiology Laboratory Biology Institute Botany Department Federal University of Rio de Janeiro Cidade Universitdria Rio de Janeiro RJ Brasil CEP 21941-901;

    Postgraduation Program of Architecture (PROARQ) - Department of Construction Technology Faculty ofArchitecture Federal University of Rio de Janeiro Cidade Universitdria Rio de Janeiro RJ Brazil CEP 21941-901;

    Geotechnical Laboratory Prof. Jacques Medina - LABGEO Coppe Federal University of Rio de Janeiro Cidade Universitdria Rio de Janeiro RJ Brazil CEP 21941-901;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物科学;
  • 关键词

    Greenroof; Substrate-Free; Tropical; Epithyte; Lithophyte;

    机译:Greenroof;无基质;热带;上膜;锂电图;

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