首页> 外文期刊>International Journal of Phytoremediation >Phytoextraction of metals and rhizoremediation of PAHs in co-contaminated soil by co-planting of Sedum alfredii with ryegrass (Lolium perenne) or castor (Ricinus communis).
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Phytoextraction of metals and rhizoremediation of PAHs in co-contaminated soil by co-planting of Sedum alfredii with ryegrass (Lolium perenne) or castor (Ricinus communis).

机译:通过将黑景天与黑麦草(黑麦草)或蓖麻(蓖麻)共同种植,在共同污染的土壤中进行金属的植物提取和PAH的根际修复。

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摘要

A pot experiment was conducted to investigate the potential for phytoextraction of heavy metals and rhizoremediation of polycyclic aromatic hydrocarbons (PAHs) in co-contaminated soil by co-planting a cadmium/zinc (Cd/Zn) hyperaccumulator and lead (Pb) accumulator Sedum alfredii with ryegrass (Lolium perenne) or castor (Ricinus communis). Co-planting with castor decreased the shoot biomass of S. alfredii as compared to that in monoculture. Cadmium concentration in S. alfredii shoot significantly decreased when grown with ryegrass or castor as compared to that in monoculture. However, no reduction of Zn or Pb concentration in S. alfredii shoot was detected in co-planting treatments. Total removal of either Cd, Zn, or Pb by plants was similar across S. alfredii monoculture or co-planting with ryegrass or castor, except enhanced Pb removal in S. alfredii and ryegrass co-planting treatment. Co-planting of S. alfredii with ryegrass or castor significantly enhanced the pyrene and anthracene dissipation as compared to that in the bare soil or S. alfredii monoculture. This appears to be due to the increased soil microbial population and activities in both co-planting treatments. Co-planting of S. alfredii with ryegrass or castor provides a promising strategy to mitigate both metal and PAH contaminants from co-contaminated soils.
机译:通过共同种植镉/锌(Cd / Zn)超级蓄积剂和铅(Pb)蓄积景天Sedum alfredii,进行了盆栽实验,研究了在重污染的土壤中重金属的植物提取和多环芳烃(PAHs)根际修复的潜力。用黑麦草(黑麦草)或蓖麻(Ricinus communis)。与单一栽培相比,与蓖麻共栽降低了苜蓿链球菌的茎生物量。与黑麦草或蓖麻一起生长时,与单培养相比,S。alfredii枝中的镉浓度显着降低。然而,在联合种植处理中,未检测到苜蓿链球菌茎中的Zn或Pb浓度降低。在整个苜蓿单培养或与黑麦草或蓖麻共种植中,植物对Cd,Zn或Pb的总去除量相似,不同之处在于在苜蓿黑麦草和黑麦草共种植处理中Pb去除率提高。与裸露土壤或苜蓿单胞菌单培养相比,苜蓿链霉菌与黑麦草或蓖麻的共种植显着提高了and和蒽的消散。这似乎是由于两种共栽处理中土壤微生物数量的增加和活性的提高。苜蓿链球菌与黑麦草或蓖麻的共栽提供了一种有希望的策略,可以减轻共同污染土壤中的金属和PAH污染物。

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