生物炭和凹凸棒对离子型稀土浸矿废弃地土壤改良效果

Effect of biochar and attapulgite on soil improvement of ionic rare earth leaching wasteland

  • 摘要: 土壤酸化、残留浸矿剂污染、保肥能力差、植被立地条件恶劣是离子型稀土浸矿废弃地生态修复的关键障碍因素。本研究用稻壳生物炭和凹凸棒作为修复材料,通过修复实验考察2种材料对浸矿废弃地土壤的改良和残留浸矿剂的源头控制作用。结果表明,稻壳生物炭和凹凸棒对土壤pH、土壤阳离子交换量提升效果显著,生物炭显著提升土壤有机质含量。稻壳生物炭和凹凸棒按质量比1∶1以土壤质量的5%施入修复效果较优,与对照组相比,土壤pH从4.51提升至7.45,有机质和CEC含量分别提升77.5%和25.4%,紫花苜蓿发芽率和鲜重提升17.1%和167.5%,黑麦草的发芽率和鲜重提升7.8%和293%,土壤氨氮淋失率降低20%。原位修复实验表明修复材料在改良浸矿废弃地土壤的同时,也能从源头控制残留浸矿剂迁移扩散,为离子型稀土浸矿废弃地的改良提供环境友好、修复效果可持续的土壤修复材料,也为离子型稀土矿区残留浸矿剂氨氮污染源头控制提供思路。

     

    Abstract: Soil acidification, residual leaching agent pollution, poor fertilizer conservation ability, and harsh vegetation site conditions are the main obstacles to the ecological restoration of abandoned land in ionic rare earth mining areas. In this study, rice husk biochar and attapulgite were considered as remediation materials to investigate the soil improvement and the source control of residual leaching agents in abandoned leaching land through remediation experiments. The results show that rice hull biochar and attapulgite significantly improve soil pH and cation exchange capacity, and biochar significantly increases soil organic matter. The best remediation effect is achieved by applying rice husk biochar and concave-convex rod at a ratio of 5% of soil mass in a 1∶1 ratio. Compared with the control group, the soil pH value increases from 4.51 to 7.45, and the organic matter and CEC contents increases by 77.5% and 25.4%, respectively. The alfalfa germination rate and fresh weight increase by 17.1% and 167.5%, and the ryegrass germination rate and fresh weight increase by 7.8% and 293%, respectively. In comparison, the leaching rate of soil ammonia nitrogen decreases by 20%. In-situ remediation experiments show that the remediation materials can not only improve the soil properties of abandoned land, but also control the migration and diffusion of residual leaching agent at the source, which provides a soil remediation material for ionized rare earth leaching abandoned land with environmentally friendly and sustainable restoration effect, and also provides ideas for the source control of ammonia nitrogen pollution of residual leaching agent in ionized rare earth mining area.

     

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