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Potential for sustainable use of trees in hot arid regions: A case study of Emirati neighborhoods in Abu Dhabi

机译:热干旱地区可持续利用树木的潜力 - 以阿布扎比的埃米拉迪社区为例

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This paper explores the future of landscapes in arid, coastal regions based on 4 water-energy regimes, using a case study of villa neighborhoods in Abu Dhabi, United Arab Emirates. It examines the potential for the planting of 15 selected tree species for carbon storage under various water-energy regimes to create carbon neutral (or negative) villa neighborhoods. Recent improvements to solar photovoltaic and reverse-osmosis desalination technology have lowered the carbon emissions for water production by over 99% relative to current gas-powered multi-stage flash desalination (0.08 kg CO2/m(3) vs.12.8 kg CO2/m(3)). This allows trees planted in hot, desert climates to utilize treated ocean water while net sequestering between 1.7 and 38.2 kg C/tree/yr depending on species. When planted in existing neighborhood open spaces, we find that net carbon storage rates from trees are significant (15-800%) relative to operational emissions rates for building energy (cooling, lighting, equipment) when households are supplied from 100% renewable energy sources. Thus, as technology advances, landscape design strategies in the region could evolve to maximize planting to sequester carbon while also creating more comfortable outdoor spaces that enhance the livability of neighborhoods. This study provides a first step in identifying the potential for landscape architectural design to employ a tree-based, neighborhood scale, carbon storage strategy in arid regions such as those in the Arabian Peninsula. As nations move towards a carbon-neutral future, it is imperative to develop innovative solutions that address urban sustainability, especially in resource-challenged and extreme climate regions where new urban development is planned.
机译:本文探讨了基于4个水能制度的沿海地区干旱地区景观环境的未来,案例研究了阿拉伯联合酋长国阿布扎比的别墅社区。它检查各种水能制度下碳储存种植15种所选树种的潜力,以产生碳中性(或负)别墅社区。太阳能光伏和反渗透脱盐技术的最新改善,相对于目前的气体供电的多级闪蒸脱盐(0.08kg CO2 / m(3)Vs.12.8kg CO2 / m,降低了99%的水产量超过99%的碳排放量(3))。这使得树木种植在热,沙漠气候下,利用经过处理的海水,同时净追检1.7至38.2千克C /树/ Yr,具体取决于物种。当在现有的邻里开放空间中种植时,我们发现,当家庭从100%可再生能源提供。因此,随着技术的进步,该地区的景观设计策略可能会发展以最大限度地提高种植以螯合碳,同时也会创造更加舒适的户外空间,增强了邻域的居住地。本研究提供了识别景观建筑设计潜力的第一步,以在阿拉伯半岛的干旱地区采用基于树的邻域规模,碳储存策略。随着国家迈向碳中立的未来,必须开发创新的解决方案,这些解决方案应解决城市可持续性,特别是在新城市发展的资源挑战和极端气候区域。

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