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A Feasibility Growth Study of Native Mosses Associated with Self-Sustaining Flora on Vertical Infrastructure

机译:在垂直基础设施上与自持植物区系相关的原生苔藓的可行性增长研究

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Is moss with associated floras a feasible solution for application to vertical infrastructure? Studies in green roofs, a similar but not identical technology, hint that these types of structures have a lower NPV over 20 to 30 years, and produce measurable sound and radiant heat reduction. Other studies show mosses produce valuable ecological benefits from reducing erosion, to aiding in nutrient and water deposition, to sequestration of harmful particulates. Moss sequester as much and in some cases, more than grasses. Moss can handle dryer periods and survive desiccation to re-bloom. Various methodologies in this exploratory and supporting tests determined substrate needs, water quantities and pH ranges. Additional tests showed moss favor growing environments with fertilizers low in nitrogen. It is not very acidic, has a symbiotic relationship with flora. The addition of moss is a superior landscape design for sound and retaining walls in narrow and heavily traveled road corridors.
机译:带有相关菌群的苔藓是否是应用于垂直基础设施的可行解决方案?对绿色屋顶的研究是一项相似但不完全相同的技术,它表明这些类型的结构在20至30年内的NPV较低,并产生可测量的声音和辐射热减少量。其他研究表明,从减少侵蚀,帮助养分和水分沉积到隔离有害微粒等方面,苔藓可产生宝贵的生态效益。与草相比,苔藓的固存量更多,有时甚至更多。苔藓可以应付干燥时期,并且在干燥后仍然可以重新开花。该探索性测试和支持性测试中的各种方法确定了底物需求,水量和pH范围。额外的测试表明,苔藓有利于氮含量低的肥料生长环境。它不是很酸性,与植物群有共生关系。苔藓的添加是一种出色的景观设计,可在狭窄且人流密集的道路走廊中使用隔音墙和挡土墙。

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