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首页> 外文期刊>Environmental Science and Pollution Research >Influence of CaO-activated silicon-based slag amendment on the growth and heavy metal uptake of vetiver grass (Vetiveria zizanioides) grown in multi-metal-contaminated soils
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Influence of CaO-activated silicon-based slag amendment on the growth and heavy metal uptake of vetiver grass (Vetiveria zizanioides) grown in multi-metal-contaminated soils

机译:多金属污染土壤生长的曹 - 活化硅渣修正对多金属污染土壤生长和重金属摄取的影响

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摘要

Few plant species used for revegetation grow well in multi-metal-contaminated soils. Vetiver grass (Vetiveria zizanioides) is known to be tolerant of heavy metals. Vetiver has been reported to be effective for revegetation and heavy metal phytoextraction by applying targeted amendments due to its large biomass. In this study, a greenhouse vetiver pot experiment and soil incubation were performed to investigate the growth and Cd, Cr, Cu, Pb, and Zn uptake of vetiver grown in multi-metal-contaminated soils treated with a CaO-activated Si-based slag amendment (0, 0.5, 1.0, and 2.0% w/w). The results showed that the effects of slag amendment on plant growth and heavy metal uptake and distribution were dependent on the amendment dosages and metal species. Although vetiver could grow in contaminated soils, its growth was obviously inhibited. The slag amendment enhanced the vetiver growth and the highest biomass (2.62-fold over the control) was determined at a 1.0% amendment rate. The slag amendment improved plant growth by alleviating the toxicity of heavy metals in plants. This result was mainly attributed to the increases in soil pH and citric acid-extractable Si caused by alkaline amendment. The results suggest that vetiver can be applied to remediate multi-metal-contaminated soils in conjunction with the application of CaO-activated Si-based slag amendment.
机译:用于植物污染土壤的植物种类少量生长良好。已知丙种草(vetistia zizanioides)是耐重金属的耐受性。据报道,乙醇夫通过其大量生物量应用靶向修正案来对植物植物和重金属植物植物申请有效。在这项研究中,进行温室培养盆盆栽试验和土壤培养,以研究用镉活化的Si基炉渣处理的多金属污染土壤中生长的生长和Cd,Cr,Cu,Pb和Zn吸收修改(0,0.5,1.0和2.0%w / w)。结果表明,炉渣修正对植物生长和重金属​​摄取和分布的影响取决于修正剂量和金属物种。虽然醋患者可以在受污染的土壤中生长,但其增长明显被抑制。炉渣修正案增强了丙酮生长,并以1.0%的修正率确定了最高生物量(对照的2.62倍)。通过减轻植物中重金属的毒性来改善植物生长的矿渣修正案。该结果主要归因于碱性修正造成土壤pH和柠檬酸可提取的Si的增加。结果表明,试用患者可以应用于修复多金属污染的土壤,同时应用Cao激活的Si基渣修正。

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