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In situ phytoextraction of polychlorinated biphenyl - (PCB) contaminated soil

机译:多氯联苯(PCB)污染土壤的原位植物提取

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A pilot-scale field trial of phytoextraction of PCBs provides insight into the practical application of this technology, using the plant species Cucurbita pepo ssp pepo cv. Howden (pumpkin), Carey, normalis (sedge), and Festuca arundinacea (tall fescue). This in situ trial took place at a historically contaminated field site, in soil contaminated with a mean concentration of 46 μg/g (range of 0.6-200 μg/g) total PCBs (Aroclor 1254/1260). Shoot bioaccumulation factors (where BAF_(shoot)=[PCB_(shoot)]/[PCB_(soil)]) of up to 0.29 were achieved in sedge. Pumpkin plants produced shoot BAFs of only 0.15. However, PCB concentrations in pumpkin shoots decreased as the distance above the root increased, suggesting that higher overall pumpkin shoot BAFs might be achieved in shorter, more densely planted plants. A model for estimating the overall PCB concentration in large pumpkin shoots with minimal sampling is proposed. Examination of congener data supports the hypothesis that C. pepo ssp pepo plants exhibit a unique biological uptake mechanism that allows for the accumulation of a significant concentration of PCBs in plant shoots. Although this mechanism is not well understood, the co-eluting IUPAC congeners 93/95 and 105/127 appear to be preferentially mobilized. Presently, all three plant species exhibit potential as PCB phytoextractors, however further research is required to elucidate methods for optimizing this technology.
机译:使用植物物种南瓜属(Cucurbita pepo ssp pepo cv)进行的多氯联苯植物提取的中试规模试验提供了对该技术的实际应用的了解。豪顿(南瓜),凯里(Carey),Normalis(莎草)和羊茅(Festuca arundinacea)(羊茅)。这项原位试验是在一个历史上受污染的现场现场进行的,土壤中的PCBs平均浓度为46μg/ g(0.6-200μg/ g)(Aroclor 1254/1260)。莎草的嫩枝生物积累因子(BAF_(拍摄)= [PCB_(拍摄)] / [PCB_(土壤)])达到了0.29。南瓜植物产生的芽BAF仅为0.15。但是,南瓜根中的PCB浓度随着根部上方距离的增加而降低,这表明在较短,种植密度更高的植物中可以实现较高的总体南瓜芽BAF。提出了一种以最少的采样估算南瓜大苗中总PCB浓度的模型。对同类数据的检验支持了假单胞菌(C. pepo ssp pepo)植物表现出独特的生物吸收机制的假设,该机制可以使植物芽中大量PCB积累。尽管对该机制尚不十分了解,但共洗脱的IUPAC同系物93/95和105/127似乎优先动员。目前,这三种植物都具有作为PCB植物提取剂的潜力,但是需要进一步研究以阐明优化该技术的方法。

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