School of Resources and Safety Engineering, Central South University, Changsha 410083, China.
Sinosteel Maanshan General Institute of Mining Research Co., Ltd., Ma'anshan 243000, China.
Int J Environ Res Public Health. 2022 Nov 13;19(22):14957. doi: 10.3390/ijerph192214957.
Stacked phosphogypsum (PG) can not only cause a waste of resources but also has a serious negative impact on the surface environment. Phosphogypsum backfilling (PGB) in the underground goaf is a useful approach to effectively address the PG environmental problems. However, the effects of this approach on the groundwater environment have not been studied. Therefore, the present study aims to assess the spatiotemporal evolution mechanism of total phosphorus (TP) in groundwater to solve the diffusion regular pattern of TP in PGB bodies, as well as to manage and mitigate the impacts of TP on the groundwater system. In this study, leaching toxicity experiments and a numerical groundwater simulation software (GMS10.4) were combined to develop a three-dimensional conceptual model for predicting the groundwater flow and contaminant transport under steady-state conditions in a phosphorus mine in Anhui. The results showed a lower TP concentration than the TP standard concentration (0.2 mg/L) at a source concentration of 0.59 mg/L. However, groundwater TP source concentrations of 1.88 and 2.46 mg/L in the study area were found to exceed the standard concentration for a certain time and areas. In addition, the transport and dispersion of TP are influenced not only by the groundwater flow field, drainage ditches, rivers, and wells but also by the adsorption and attenuation effects of the soil that occur during the transport process, affecting the dispersion distance and distribution of groundwater TP concentrations. The results of the present study can promote the development of groundwater-friendly PGB technology, providing a great significance to the construction of green mines and the promotion of ecological civilization.
堆积磷石膏(PG)不仅会造成资源浪费,而且对地表环境也会产生严重的负面影响。地下采空区磷石膏回填(PGB)是有效解决 PG 环境问题的一种方法。然而,该方法对地下水环境的影响尚未得到研究。因此,本研究旨在评估地下水中总磷(TP)的时空演变机制,以解决 PGB 体中 TP 的扩散规律问题,并对 TP 对地下水系统的影响进行管理和缓解。在本研究中,结合浸出毒性实验和地下水数值模拟软件(GMS10.4),建立了安徽某磷矿在稳定状态下地下水流和污染物运移的三维概念模型。结果表明,在源浓度为 0.59mg/L 时,TP 浓度低于 TP 标准浓度(0.2mg/L)。然而,研究区地下水 TP 源浓度为 1.88 和 2.46mg/L 的时间和区域超过了标准浓度。此外,TP 的迁移和扩散不仅受到地下水流场、排水沟、河流和水井的影响,还受到土壤在迁移过程中发生的吸附和衰减作用的影响,影响了地下水 TP 浓度的扩散距离和分布。本研究的结果可以促进地下水友好型 PGB 技术的发展,对绿色矿山建设和生态文明建设具有重要意义。