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生物地球化学和工程屏障防止污染物扩散。

Biogeochemical and engineered barriers for preventing spread of contaminants.

机构信息

Vilnius Gediminas Technical University, Saulėtekio al. 11, Vilnius-40, Lithuania.

出版信息

Environ Sci Pollut Res Int. 2018 Feb;25(6):5254-5268. doi: 10.1007/s11356-017-9539-7. Epub 2017 Jun 30.

Abstract

The intensive industrial development and urbanization, as well as the negligible return of hazardous components to the deeper layers of the Earth, increases the contamination load on the noosphere (i.e., the new status of the biosphere, the development of which is mainly controlled by the conscious activity of a human being). The need for reducing the spread and mobility of contaminants is growing. The insights into the role of the tree in the reduction of contaminant mobility through its life cycle are presented to show an important function performed by the living matter and its products in reducing contamination. For maintaining the sustainable development, natural materials are often used as the media in the environmental protection technologies. However, due to increasing contamination intensity, the capacity of natural materials is not sufficiently high. Therefore, the popularity of engineered materials, such as biochar which is the thermochemically modified lignocellulosic product, is growing. The new approaches, based on using the contaminant footprint, as well as natural (biogeochemical) and engineered barriers for reducing contaminant migration and their application, are described in the paper.

摘要

密集的工业化发展和城市化,以及危险成分几乎无法返回地球深层,增加了对生物圈上层(即生物圈的新状态,其发展主要受人类有意识活动的控制)的污染负荷。减少污染物扩散和迁移的需求日益增长。本文通过展示树木在生命周期中通过减少污染物的迁移而发挥的重要作用,介绍了树木在减少污染物迁移方面的作用。为了维持可持续发展,天然材料通常被用作环境保护技术中的介质。然而,由于污染强度的增加,天然材料的容量还不够高。因此,工程材料的应用越来越广泛,如生物炭,这是一种经过热化学改性的木质纤维素产品。本文描述了基于使用污染物足迹以及减少污染物迁移的天然(生物地球化学)和工程屏障的新方法及其应用。

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