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人工湿地处理废水的环境足迹

Environmental footprint of constructed wetlands treating wastewater.

作者信息

Gkika Dimitra, Gikas Georgios D, Tsihrintzis Vassilios A

机构信息

a Laboratory of Ecological Engineering and Technology, Department of Environmental Engineering, School of Engineering , Democritus University of Thrace , Xanthi , Greece.

出版信息

J Environ Sci Health A Tox Hazard Subst Environ Eng. 2015;50(6):631-8. doi: 10.1080/10934529.2015.994970.

Abstract

The aim of the study is to determine environmentally friendlier construction materials for constructed wetland facilities treating wastewater. This is done by computing the environmental footprint of the facility based on the methodology of life cycle assessment (LCA). This methodology reveals the dominant aggravating processes during the construction of a constructed wetland (CW) and can help to create alternative environmentally friendlier solutions. This methodology was applied for the determination of the overall environmental profile of a hybrid CW facility. The LCA was applied first to the facility as originally designed, where reinforced concrete was used in some components. Then, alternative construction materials to reinforced concrete were used, such as earth covered with high density polyethylene (HDPE) or clay, and LCA was applied again. Earth structures were found to have reduced environmental impact compared to concrete ones, and clay was found environmentally friendlier compared to HDPE. Furthermore, estimation of the construction costs of the three scenarios indicate that the last scenario is also the least expensive.

摘要

该研究的目的是确定用于处理废水的人工湿地设施的更环保建筑材料。这是通过基于生命周期评估(LCA)方法计算该设施的环境足迹来实现的。该方法揭示了人工湿地(CW)建设过程中主要的加剧环境影响的过程,并有助于创造更环保的替代解决方案。该方法被用于确定混合人工湿地设施的整体环境概况。LCA首先应用于最初设计的设施,该设施的一些部件使用了钢筋混凝土。然后,使用了钢筋混凝土的替代建筑材料,如覆盖高密度聚乙烯(HDPE)的泥土或粘土,并再次应用LCA。结果发现,与混凝土结构相比,土质结构对环境的影响较小,与HDPE相比,粘土更环保。此外,对三种方案建设成本的估算表明,最后一种方案也是成本最低的。

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