Institute of Geotechnical Engineering, Zhejiang University, Hangzhou, 310058, China; MOE Key Laboratory of Soft Soils and Geoenvironmental Engineering, Zhejiang University, Hangzhou, 310058, China.
Hangzhou Environment Group Co., Ltd., Hangzhou, 310022, China.
J Environ Manage. 2023 Nov 1;345:118860. doi: 10.1016/j.jenvman.2023.118860. Epub 2023 Sep 7.
Groundwater pollution at landfill sites poses a significant risk to human health and ecological security. However, efficiently tracking pollution plumes in a polluted aquifer with variable pollutants remains challenging. In order to track groundwater pollution plumes at landfill sites, an in-situ borehole hydrochemical and hydrodynamic profile (BHHP) method was developed. Total dissolved solids (TDS), oxidation-reduction potential (ORP), and ammonia nitrogen were selected as the hydrochemical indicators. Meanwhile, the hydrodynamic indicators included flow direction and flow velocity of groundwater. Among the three hydrochemical indicators, TDS and ORP were analyzed to be the prior alternative ones for the BHHP application. The BHHP method was successfully applied to track groundwater pollution plumes at a typical valley-type landfill site and its neighboring downstream zone. Consequently, four groundwater pollution plumes of different types and different scales were identified in both horizontal and vertical directions within the depth of 0-50 m, and the various pollution sources for the detected pollution plumes were revealed. Furthermore, the BHHP method was validated using sampling test results of groundwater chloride and chemical oxygen demand at the surveyed landfill site.
垃圾填埋场地下水污染对人类健康和生态安全构成重大风险。然而,有效地追踪受污染含水层中具有不同污染物的污染羽流仍然具有挑战性。为了追踪垃圾填埋场的地下水污染羽流,开发了原位钻孔水化学和水动力剖面(BHHP)方法。总溶解固体(TDS)、氧化还原电位(ORP)和氨氮被选为水化学指标。同时,水动力指标包括地下水的流向和流速。在这三个水化学指标中,TDS 和 ORP 被分析为 BHHP 应用的优先替代指标。BHHP 方法成功应用于追踪典型山谷型垃圾填埋场及其下游邻区的地下水污染羽流。结果,在 0-50 m 的深度范围内,在水平和垂直方向上确定了四个不同类型和不同规模的地下水污染羽流,并揭示了检测到的污染羽流的各种污染源。此外,还使用调查垃圾填埋场的地下水氯化物和化学需氧量的采样测试结果对 BHHP 方法进行了验证。