Air Quality Research Center, University of California Davis, Davis, CA, 95616, USA.
Civil & Environmental Engineering, Colorado State University, Fort Collins, CO, 80523, USA.
Waste Manag. 2023 Jul 1;166:211-221. doi: 10.1016/j.wasman.2023.04.048. Epub 2023 May 13.
This study evaluated the effects of addition of oil and gas exploration and production wastes (E&PW) on hydraulic behavior of municipal solid waste (MSW). A series of laboratory experiments were conducted to assess the impacts of vertical stress, waste composition, mixture ratio of MSW to E&PW based on total mass (e.g., 20% MSW + 80% E&PW), and mixing methods on hydraulic conductivity. Hydraulic conductivity (k) for MSW-E&PW mixtures with 20% and 40% E&PW contents reduced from 3 × 10 m/s to 10 m/s as vertical stress increased from 0 to 400 kPa. An increase in the mixture ratio above 60% resulted in an additional order-of-magnitude decrease in k to 10 m/s as vertical stress increased above 200 kPa. The addition of E&PW did not impact the available flow path, even though adding E&PW to MSW reduced the void spaces. This indicated that the waste matrix is capable of accepting E&PW while keeping the flow structure within the waste matrix. However, for vertical stress greater than 50 kPa, mixtures of MSW + 80% E&PW were observed to yield hydraulic conductivity < 10 m/s.
本研究评估了油气勘探和生产废物(E&PW)的添加对城市固体废物(MSW)水力行为的影响。进行了一系列实验室实验,以评估垂直应力、废物组成、基于总质量的 MSW 与 E&PW 的混合比例(例如,20% MSW+80% E&PW)以及混合方法对导水率的影响。当垂直应力从 0 增加到 400 kPa 时,含有 20%和 40%E&PW 含量的 MSW-E&PW 混合物的导水率从 3×10 m/s 降低到 10 m/s。当混合物比例增加到 60%以上时,即使向 MSW 中添加 E&PW 会减少空隙空间,但 k 值仍会增加一个数量级,在垂直应力超过 200 kPa 时降低到 10 m/s。E&PW 的添加并没有影响可用的流动路径,尽管向 MSW 中添加 E&PW 会减少空隙空间。这表明废物基质能够在保持废物基质内的流动结构的同时接受 E&PW。然而,对于垂直应力大于 50 kPa 的情况,观察到 MSW+80%E&PW 的混合物的导水率<10 m/s。