可生物降解螯合剂强化黑麦草植物提取德兴铜尾砂中的Cu与Cd

Biodegradable chelating agents enhanced phytoextraction of Cu and Cd from Dexing copper tailings by ryegrass

  • 摘要: 评价螯合剂辅助植物修复对重金属铜尾砂的治理效果,以江西德兴铜矿4#尾矿库铜尾砂为研究对象,开展了为期90 d的黑麦草(Lolium perenne L.)盆栽试验。研究选用柠檬酸(CA)、富里酸(FA)和聚天冬氨酸(PASP)3种可生物降解螯合剂,通过溶液浇灌方式施入尾砂中(CA与FA:1~10 mmol/L;PASP:1~10 g/L),探究其对黑麦草生长及Cu、Cd迁移积累的影响。结果表明:施用的3种可生物降解螯合剂均能显著改善铜尾砂的理化环境,其中1 mmol/L CA和4 mmol/L CA处理分别对有机质和阳离子交换量的改善效果最佳,较对照分别提升42.88%和91.80%。各处理均显著促进了黑麦草生长,以7 g/L PASP处理效果最显著,其地上部和地下部生物量较对照分别提高208.28%和79.55%。螯合剂的施加有效促进了Cu、Cd由稳定的残渣态向迁移性较强的弱酸提取态转化,其中7 g/L PASP对Cd的活化效果最显著,弱酸提取态Cd较对照显著升高103.37%。此外,4 mmol/L CA处理下黑麦草对Cu的富集系数和转运系数均达最大值,较对照分别显著提高92.24%和41.67%;而7 g/L PASP处理则最有利于黑麦草对Cd的富集与转运,其富集和转运系数较对照分别显著提高18.00%和106.90%。基于尾砂理化性质、重金属有效态与形态含量等核心指标的主成分分析(PCA)综合评价表明,4 mmol/L CA与7 g/L PASP分别在修复铜尾砂Cu和Cd污染方面具有最佳应用潜力。研究结果可为硫化铜矿区重金属的高效植物提取与生态修复提供科学参考。

     

    Abstract: This study evaluated the remediation efficiency of chelator−assisted phytoremediation for copper heavy metal tailings. Taking copper tailings collected from the No. 4 tailings pond of Dexing Copper Mine in Jiangxi Province as the research material, a 90−day pot experiment using perennial ryegrass (Lolium perenne L.) was carried out. Three biodegradable chelators, namely citric acid (CA), fulvic acid (FA) and polyaspartic acid (PASP), were selected and applied to tailings via solution irrigation (CA and FA: 1–10 mmol/L; PASP: 1–10 g/L). The effects of these chelators on ryegrass growth and the translocation and accumulation of copper (Cu) and cadmium (Cd) were investigated. The results showed that all three biodegradable chelators significantly improved the physicochemical properties of copper tailings. Treatments with 1 mmol/L CA and 4 mmol/L CA achieved the optimal improvement in organic matter and cation exchange capacity (CEC), which increased by 42.88% and 91.80% respectively compared with the control group. All treatments markedly promoted ryegrass growth, with the 7 g/L PASP treatment exhibiting the most prominent effect; the aboveground and underground biomass increased by 208.28% and 79.55% relative to the control. The application of chelators effectively transformed stable residual fractions of Cu and Cd into more mobile weak acid−extractable fractions. The 7 g/L PASP treatment produced the strongest activation effect on Cd, with the content of weak acid−extractable Cd rising significantly by 103.37% versus the control. In addition, the bioconcentration factor (BCF) and translocation factor (TF) of Cu in ryegrass reached maximum values under the 4 mmol/L CA treatment, which were significantly elevated by 92.24% and 41.67% compared with the control, respectively. The 7 g/L PASP treatment was most conducive to Cd accumulation and translocation in ryegrass, with its BCF and TF significantly increasing by 18.00% and 106.90% relative to the control. Principal component analysis (PCA), which comprehensively evaluated core indicators including tailings physicochemical properties, available heavy metal contents and heavy metal fraction distributions, demonstrated that 4 mmol/L CA and 7 g/L PASP possessed the optimal application potential for remediating Cu and Cd contamination in copper tailings, respectively. The findings of this study can provide scientific references for efficient phytoextraction and ecological restoration of heavy metal pollution in copper sulfide mining areas.

     

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