Xiang Yang, Steffen Janelle M, Lam Phoebe J, Gartman Amy, Mizell Kira, Fitzsimmons Jessica N
Department of Ocean Sciences, University of California, Santa Cruz, California 95064, United States.
Department of Oceanography, Texas A&M University, College Station, Texas 77840, United States.
ACS ES T Water. 2024 Jun 27;4(7):2957-2967. doi: 10.1021/acsestwater.4c00166. eCollection 2024 Jul 12.
The potential mining of deep-sea polymetallic nodules has been gaining increasing attention due to their enrichment in metals essential for a low-carbon future. To date, there have been few scientific studies concerning the geochemical consequences of dewatered mining waste discharge into the pelagic water column, which can inform best practices in future mining operations. Here, we report the results of laboratory incubation experiments that simulate mining discharge into anoxic waters such as those that overlie potential mining sites in the North Pacific Ocean. We find that manganese nodules are reductively dissolved, with an apparent activation energy of 42.8 kJ mol, leading to the release of associated metals in the order manganese > nickel > copper > cobalt > cadmium > lead. The composition of trace metals released during the incubation allows us to estimate a likely trace metal budget from the simulated dewatering waste plume. These estimates suggest that released cobalt and copper are the most enriched trace metals within the plume, up to ∼15 times more elevated than the background seawater. High copper concentrations can be toxic to marine organisms. Future work on metal toxicity to mesopelagic communities could help us better understand the ecological effects of these fluxes of trace metals.
深海多金属结核因其富含对低碳未来至关重要的金属而日益受到关注。迄今为止,关于脱水采矿废弃物排放到远洋水柱中的地球化学后果的科学研究很少,而这些研究结果可为未来采矿作业的最佳实践提供参考。在此,我们报告了实验室培养实验的结果,这些实验模拟了向缺氧水域(如北太平洋潜在采矿地点上方的水域)排放采矿废弃物的情况。我们发现锰结核会发生还原溶解,其表观活化能为42.8 kJ/mol,导致相关金属按锰>镍>铜>钴>镉>铅的顺序释放。培养过程中释放的痕量金属组成使我们能够估算模拟脱水废弃物羽流中可能的痕量金属预算。这些估算表明,释放出的钴和铜是羽流中最富集的痕量金属,比背景海水高出约15倍。高浓度的铜对海洋生物可能有毒。未来关于金属对中层海洋群落毒性的研究有助于我们更好地理解这些痕量金属通量的生态影响。