College of Resources and Environment, Yangtze University, 111 University Road, Wuhan, People's Republic of China.
China University of Geosciences, 388 Lumo Road, Wuhan, 430074, People's Republic of China.
Environ Sci Pollut Res Int. 2018 Apr;25(12):11343-11350. doi: 10.1007/s11356-018-1427-2. Epub 2018 Feb 7.
The phytoremediation efficiency of multi-metal-polluted sites in an electronic waste recycling town by Eucalyptus globulus was evaluated through a series of 2-year field experiments. Different initial planting densities (2500, 5000, and 10,000 plants per ha), coppice rotations, and harvesting position (5 or 30 cm above the ground) protocols were designed to improve the remediation potential of the species. There were unnoticeable variations in metal concentrations and distribution characteristics in plant tissues in a low and medium planting-density field during the experimental period. At the end of the experiment, total biomass production per hectare in different protocols displayed a wide range with maximum yield produced in high density, moderate harvesting, and coppice rotation protocol being 2.9 times higher than the minimum yield. The moderate harvest protocol performed with medium planting density was the optimal Cd and Cu decontamination technique. Although the high planting-density field without coppice rotation had the strongest potential for Pb decontamination, it would take more time to remove other metals for the multi-metal-polluted soil decontamination. Considering the remediation efficiency and maintainability of the cultivation system, the moderate harvest protocol performed with the medium planting density was commended for phytoremediation of e-waste recycling impacted area.
采用一系列为期 2 年的田间试验,评估了巨桉对电子废物回收城镇多金属污染场地的植物修复效率。设计了不同的初始种植密度(2500、5000 和 10000 株/公顷)、萌蘖轮伐和收获位置(离地 5 或 30 厘米)方案,以提高该物种的修复潜力。在实验期间,低和中种植密度田间植物组织中的金属浓度和分布特征没有明显变化。实验结束时,不同方案的每公顷总产量差异很大,高密度、适度收获和萌蘖轮伐方案的最大产量比最低产量高 2.9 倍。适度收获方案与中等种植密度相结合是 Cd 和 Cu 脱污染的最佳技术。虽然没有萌蘖轮伐的高密度田块对 Pb 的脱污染潜力最强,但要去除多金属污染土壤中的其他金属还需要更多的时间。考虑到修复效率和栽培系统的可持续性,建议采用中等种植密度和适度收获方案来进行电子废物回收区的植物修复。