Key Laboratory of Algal Biology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan, 430072, China; University of Chinese Academy of Sciences, Beijing, 100049, China.
Key Laboratory of Algal Biology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan, 430072, China.
Environ Pollut. 2022 Aug 1;306:119408. doi: 10.1016/j.envpol.2022.119408. Epub 2022 May 3.
The formation of tailings ponds depends on the long-term accumulation of tailing and high terrain. Its seepage pollution characteristics may have gradient variations on spatiotemporal scales. Used three nearby metal tailings ponds with different service times, we aimed to reveal seepage pollution trends on spatiotemporal scales and the response of soil microbial community. The results showed that the degree of seepage pollution was negatively correlated with the distance from the tailings pond on the spatial scale, while the seepage pollution showed higher levels in tailings ponds with longer service times on the temporal scale (RI = 248.04-2109.85). The pollution effect of seepage persisted after the tailings pond was discontinued (RI = 226.72). Soil microbial diversity increased with spatial scale expansion. The proportion of Actinomyces gradually increased and Proteobacteria decreased. Cr (r = 0.21) and Fe (r = 0.22) contributed more to the microbial community changes. Functional predictions showed that pathways related to signal transduction and energy metabolism were more abundant in the tailings pond. In contaminated areas, the proportion of nitrate respiration and cellulolysis functional communities had decreased, and some potentially pathogenic human taxa had accumulated. These results emphasized that there was pollution accumulation on temporal scale and pollution dispersion on spatial scale around tailings ponds, and the response of the microbial community further illustrated these trends.
尾矿库的形成取决于尾矿的长期积累和高地形。其渗流污染特征可能在时空尺度上存在梯度变化。本研究选用了三个具有不同服务年限的附近金属尾矿库,旨在揭示时空尺度上的渗流污染趋势和土壤微生物群落的响应。结果表明,在空间尺度上,渗流污染程度与距尾矿库的距离呈负相关,而在服务年限较长的尾矿库中,渗流污染程度在时间尺度上更高(RI=248.04-2109.85)。尾矿库停止使用后,渗流污染的影响仍在持续(RI=226.72)。土壤微生物多样性随空间尺度的扩大而增加。放线菌的比例逐渐增加,而变形菌的比例减少。Cr(r=0.21)和 Fe(r=0.22)对微生物群落变化的贡献更大。功能预测表明,与信号转导和能量代谢相关的途径在尾矿库中更为丰富。在污染区域,硝酸盐呼吸和纤维素分解功能群落的比例有所下降,一些潜在的致病性人类分类群有所积累。这些结果强调了尾矿库周围在时间尺度上存在污染积累和空间尺度上存在污染扩散,微生物群落的响应进一步说明了这些趋势。