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Potential of Technosols Created with Urban By-Products for Rooftop Edible Production

机译:用城市副产品创造的用于屋顶食用产品的Technosols潜力

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摘要

Urban agriculture is sprouting throughout the world nowadays. New forms of urban agriculture are observed such as rooftop farming. In the case of low-tech rooftop farming projects, based on recycled urban waste, one of the key issues is the type of substrate used, as it determines the functions and ecosystem services delivered by the green roof. Using a five year experimental trial, we quantified the food production potential of Technosols created only with urban wastes (green waste compost, crushed wood, spent mushroom), as well as the soil fertility and the potential contamination of food products. Regarding food production, our cropping system showed promising results across the five years, in relation with the high fertility of the Technosols. This fertility was maintained, as well as the nutrients stocks after five cropping years. Most of the edible crops had trace metals contents below existing norms for toxic trace metals with nevertheless a concern regarding certain some trace metals such as Zn and Cu. There was no trace metal accumulation in the Technosols over time except for Zn. This study confirmed that constructing Technosols only from urban wastes is a suitable and efficient solution to design rooftops for edible production.
机译:当今世界,都市农业正在萌芽。观察到了新型的都市农业形式,例如屋顶农业。在以回收的城市垃圾为基础的低技术屋顶农业项目中,关键问题之一是所使用的基质类型,因为它决定了绿色屋顶所提供的功能和生态系统服务。通过一项为期五年的试验性试验,我们量化了仅由城市废弃物(绿色废弃物堆肥,碎木,废蘑菇)产生的Technosols的食品生产潜力,以及土壤肥力和食品的潜在污染。关于粮食生产,我们的农作制度在过去的五年中表现出令人鼓舞的成果,这与Technosols的高肥力有关。保持了这种肥力,并保持了5年种植后的养分含量。大多数可食用作物中的痕量金属含量均低于有毒痕量金属的现行标准,但仍需考虑某些痕量金属,例如锌和铜。除锌外,随着时间的推移,Technosols中没有痕量金属的积累。这项研究证实,仅从城市垃圾中构建技术酚是设计可食用生产屋顶的合适而有效的解决方案。

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