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图林根州东部罗恩堡地区放射性及产生酸性矿山排水的矿山废弃物的封面设计。

Cover design for radioactive and AMD-producing mine waste in the Ronneburg area, eastern Thuringia.

作者信息

Gatzweiler R, Jahn S, Neubert G, Paul M

机构信息

Wismut GmbH, Jagdschänkenstrasse 29, 09117 Chemnitz, Germany.

出版信息

Waste Manag. 2001;21(2):175-84. doi: 10.1016/s0956-053x(00)00060-x.

Abstract

At the former uranium mining site of Ronneburg, large scale underground and open pit mining for nearly 40 years resulted in a production of about 113,000 tonnes of uranium and about 200 million cubic metres of mine waste. In their present state, these materials cause risks to human health and strong environmental impacts and therefore demand remedial action. The remediation options available are relocation of mine spoil into the open pit and on site remediation by landscaping/contouring, placement of a cover and revegetation. A suitable vegetated cover system combined with a surface water drainage system provides long-term stability against erosion and reduces acid generation thereby meeting the main remediation objectives which are long-term reduction of radiological exposure and contaminant emissions and recultivation. The design of the cover system includes the evaluation of geotechnical, radiological, hydrological, geochemical and ecological criteria and models. The optimized overall model for the cover system has to comply with general conditions as, e.g. economic efficiency, public acceptance and sustainability. Most critical elements for the long-term performance of the cover system designed for the Beerwalde dump are the barrier system and its long-term integrity and a largely self-sustainable vegetation.

摘要

在罗讷堡以前的铀矿开采场地,近40年的大规模地下和露天开采产出了约11.3万吨铀和约2亿立方米的矿渣。就其目前状况而言,这些物质对人类健康构成风险并对环境产生强烈影响,因此需要采取补救行动。现有的补救方案包括将矿渣转移至露天矿坑以及通过景观美化/等高线整形、覆盖和植被恢复进行现场修复。一个合适的植被覆盖系统与地表水排水系统相结合,可提供长期的抗侵蚀稳定性并减少酸的产生,从而实现主要的修复目标,即长期减少辐射暴露和污染物排放以及重新开垦。覆盖系统的设计包括对岩土工程、辐射、水文、地球化学和生态标准及模型的评估。覆盖系统的优化整体模型必须符合一般条件,如经济效率、公众接受度和可持续性。为比尔瓦尔德矿渣场设计的覆盖系统长期性能的最关键要素是屏障系统及其长期完整性以及基本自我维持的植被。

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