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修正案促进了道格拉斯冷杉在福尔摩沙矿尾矿上的存活。

Amendments promote Douglas-fir survival on Formosa Mine tailings.

机构信息

Pacific Ecological Systems Division, Center for Public Health and Environmental Assessment, U.S. Environmental Protection Agency, Corvallis, Oregon, USA.

Consolidated Safety Services, Corvallis, Oregon, USA.

出版信息

J Environ Qual. 2024 Sep-Oct;53(5):553-564. doi: 10.1002/jeq2.20587. Epub 2024 Jul 28.

Abstract

While mining provides valuable metals and minerals to meet societal demands, it can cause environmental contamination from the residuals (i.e., tailings) of mining. Tailings are often acidic, laden with heavy metals, and lacking adequate nutrients and physical conditions for plant growth, precluding the establishment of plant cover to reduce the offsite movement of mining wastes. This paper describes a case study at the Formosa Mine in Douglas County, Oregon, where tailings were amended with a mixture of lime, biosolids, biochar, and microbial inoculum to facilitate establishment of Douglas-fir (Pseudotsuga menziesii [Mirbel] Franco) seedlings. Results show that the tailings pH increased, and Douglas-fir seedlings survived and grew with these amendments. After 2 years, pH did, however, decrease in some downslope locations and was associated with an increase in tree mortality. This suggests that tailings conditions should be monitored, and amendments should be reapplied as needed, particularly in areas receiving acidic runoff from unamended upslope tailings, until the seedlings are fully established. This study not only provides a prescription for the addition of biochar and other amendments to enhance plant growth for revegetation purposes in low-pH, metal-contaminated mine tailings, but it also demonstrates a method that can be used to address similar problems at other mine sites.

摘要

虽然采矿为满足社会需求提供了有价值的金属和矿物,但它也可能导致采矿残留物(即尾矿)造成环境污染。尾矿通常呈酸性,含有重金属,缺乏植物生长所需的充足养分和物理条件,无法建立植物覆盖层来减少采矿废物的场外迁移。本文描述了俄勒冈州道格拉斯县福塞斯矿的一个案例研究,在那里,尾矿中添加了石灰、生物固体、生物炭和微生物接种物的混合物,以促进道格拉斯冷杉( Pseudotsuga menziesii [Mirbel] Franco)幼苗的建立。结果表明,尾矿的 pH 值升高,并且这些改良剂有助于道格拉斯冷杉幼苗的存活和生长。然而,2 年后,一些下坡处的 pH 值确实下降了,并且与树木死亡率的增加有关。这表明应该监测尾矿的情况,并根据需要重新施用改良剂,特别是在接收未改良上坡尾矿酸性径流的地区,直到幼苗完全建立。这项研究不仅提供了在低 pH 值、金属污染的尾矿中添加生物炭和其他改良剂以促进植物生长的方法,用于植被恢复目的,而且还展示了一种可以用于解决其他矿山类似问题的方法。

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本文引用的文献

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